Product Description
Motor Speed Reducer R57 RF57 Motor Inline Shaft Helical Agricultural gear grove brass miniature Speed worm Reducer gearbox China Industrial
Application of worm Reducer
A worm reducer is a type of gear reducer that uses a worm gear to transmit power between 2 shafts. Worm gears are characterized by their high torque and low speed, which makes them ideal for applications where precision and control are important.
Worm reducers are used in a wide variety of applications, including:
- Lifts and elevators: Worm reducers are used in the drive mechanisms of lifts and elevators to provide high torque and low speed. This allows the lifts and elevators to move smoothly and precisely, even when carrying heavy loads.
- Machine tools: Worm reducers are used in machine tools, such as lathes and milling machines, to provide smooth, precise motion. This allows the machine tools to cut and shape materials accurately and efficiently.
- Conveyors: Worm reducers are used in conveyors to move materials from 1 place to another. The high torque of the worm reducers allows the conveyors to move heavy loads smoothly and efficiently.
- Mixers: Worm reducers are used in mixers to mix ingredients together. The high torque of the worm reducers allows the mixers to mix ingredients quickly and thoroughly.
- Sawmills: Worm reducers are used in sawmills to saw logs into lumber. The high torque of the worm reducers allows the sawmills to saw logs quickly and efficiently.
- Wind turbines: Worm reducers are used in wind turbines to convert the rotational motion of the blades into electrical energy. The high torque of the worm reducers allows the wind turbines to generate electricity even in low wind conditions.
Worm reducers are a versatile and essential part of many machines and devices. They are used in a wide variety of applications, and their high torque and low speed make them ideal for applications where precision and control are important.
Here are some of the benefits of using worm reducers:
- High torque: Worm reducers can provide high torque, which makes them ideal for applications where heavy loads need to be moved.
- Low speed: Worm reducers can provide low speed, which makes them ideal for applications where precision and control are important.
- Smooth operation: Worm reducers operate smoothly, which makes them ideal for applications where noise and vibration need to be minimized.
- Compact size: Worm reducers can be made in a compact size, which makes them ideal for applications where space is limited.
- Low maintenance: Worm reducers require very little maintenance, which makes them a cost-effective option for long-term use.
Worm reducers are a reliable and efficient type of gear reducer that can be used in a wide variety of applications. If you are looking for a gear reducer that can provide high torque, low speed, smooth operation, compact size, and low maintenance, then a worm reducer is a good choice.
/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
Application: | Motor, Electric Cars, Motorcycle, Machinery, Marine, Agricultural Machinery, Car |
---|---|
Function: | Distribution Power, Clutch, Change Drive Torque, Change Drive Direction, Speed Changing, Speed Reduction, Speed Increase |
Layout: | Coaxial |
Hardness: | Hardened Tooth Surface |
Installation: | Horizontal Type |
Step: | Three-Step |
Samples: |
US$ 9999/Piece
1 Piece(Min.Order) | |
---|
Considerations for Choosing Lubrication for Industrial Gearboxes
Choosing the right lubrication for industrial gearboxes is crucial for ensuring optimal performance, longevity, and efficiency. Several important considerations should be taken into account when selecting lubrication:
1. Operating Conditions: The operating environment, including temperature, humidity, and contaminants, affects the choice of lubrication. Extreme temperatures may require lubricants with specific temperature ranges.
2. Load and Torque: The magnitude of load and torque influences the selection of lubrication with appropriate viscosity and film strength to provide effective protection under varying conditions.
3. Speed and RPM: Gearbox speed and RPM determine the lubrication’s ability to maintain a stable lubricating film between gear teeth and other components.
4. Lubrication Interval: Consider the required lubrication frequency and intervals. Some applications may demand lubricants with longer service intervals to minimize downtime.
5. Gearbox Type: Different gearbox designs, such as helical, bevel, or worm, may have varying lubrication requirements due to differences in gear engagement and motion.
6. Compatibility: Ensure the selected lubricant is compatible with the gearbox materials, seals, and components to prevent degradation or damage.
7. Contamination Control: Lubricants should possess effective anti-contamination properties to minimize the risk of particles or debris affecting gearbox performance.
8. Water Resistance: In applications exposed to water or moisture, water-resistant lubricants help prevent corrosion and maintain proper lubrication properties.
9. Additives: Some lubricants include additives that enhance performance, such as anti-wear, anti-foam, and extreme pressure additives.
10. Environmental Considerations: Evaluate the environmental impact of the chosen lubrication, including disposal and potential harm to the ecosystem.
11. Manufacturer Recommendations: Follow the gearbox manufacturer’s recommendations and guidelines for lubrication type, viscosity, and maintenance practices.
Choosing the appropriate lubrication involves a comprehensive assessment of these factors, ensuring that the lubricant selected is well-suited for the specific demands of the industrial gearbox and its application.
Drawbacks and Limitations of Industrial Gearbox Systems
While industrial gearbox systems offer numerous benefits, they also come with certain drawbacks and limitations:
1. Size and Weight: Industrial gearboxes can be large and heavy, which may require additional space and structural support in machinery design.
2. Efficiency Loss: Gearboxes can introduce energy losses due to friction and heat generation, especially in applications with high-speed rotations.
3. Maintenance Requirements: Gearboxes need regular maintenance to ensure optimal performance, including lubrication, gear inspections, and potential replacement of worn components.
4. Cost: The design, manufacturing, and installation of industrial gearbox systems can be expensive, especially for custom or specialized solutions.
5. Noise and Vibration: Gearboxes can generate noise and vibration, which may require additional measures for noise reduction and vibration damping.
6. Limited Operating Range: Each gearbox has a specific torque and speed range where it operates efficiently. Operating outside these limits can lead to reduced performance and potential damage.
Despite these limitations, industrial gearbox systems remain essential components in many industries due to their ability to efficiently transmit power, control motion, and adapt to various applications.
Industries Using Industrial Gearboxes
Industrial gearboxes play a crucial role in various industries, enabling efficient power transmission and motion control. Some of the industries that commonly utilize industrial gearboxes for their operations include:
- Manufacturing: Industrial gearboxes are used in manufacturing processes for tasks such as material handling, assembly lines, and machine tools.
- Automotive: Gearboxes are essential components in automotive manufacturing, used in transmissions, engines, and other critical systems.
- Construction: Construction machinery relies on gearboxes for tasks like lifting, excavating, and moving heavy materials.
- Mining: Mining equipment utilizes gearboxes for drilling, crushing, conveying, and other demanding operations.
- Energy: Power generation facilities, including wind turbines, hydroelectric plants, and fossil fuel power plants, use gearboxes for efficient energy conversion.
- Marine: Gearboxes are crucial in marine applications, such as ship propulsion systems and offshore equipment.
- Agriculture: Farming machinery, like tractors and harvesters, relies on gearboxes for various tasks like plowing, planting, and harvesting.
- Food and Beverage: Gearboxes are used in food processing and packaging equipment, ensuring precise and efficient production.
- Textile: The textile industry employs gearboxes in machinery for weaving, spinning, and fabric processing.
- Pulp and Paper: Gearboxes play a role in papermaking processes, including pulping, drying, and rolling.
These are just a few examples of industries that heavily rely on industrial gearboxes to optimize their operations and ensure the efficient functioning of their machinery and equipment.
editor by CX 2024-05-17
China supplier H Series Vertical Shaft Industrial Gear Units Fertilizer Spreader Gearbox differential gearbox
Product Description
PROFESSIONAL MANUFACTURE
— SINCE 1995
H series vertical shaft industrial gear units fertilizer spreader gearbox
Chinese electric motor speed reducer is widely used in mining machinery, chemical industry,steel metallurgy, light
industry,environmental protection, paper making, printing, lifting transport, food industry and so on.
Main Series Product: R series helical gear motor reducer, K series spiral bevel gear reducer, NGW, P series planetary gear reducer, H B series helical gearbox, Z (ZDY, ZLY, ZSY, and ZFY) serial hard tooth surface cylindrical gearbox reducer, D (DBY and DCY) serial hard tooth surface cone gear reducer, cycloidal speed reducer, etc. Meanwhile, map sample processing business can be undertaken.
Product Description
Realized parallel shaft,right-angle shaft modes and horizontal,vertical mounting modes.
Using less component parts.
Applying advanced grinding process which improved the stability and the efficiency of transmit power with lower noise.
Mounting mode:foot-mounted,flange-mounted,swing base-mounted,torque-arm-mounted.
Ratio range:1.23~450. It will be higher when combining with K&R series reducer.
Product Parameters
Type |
Input Speed r/min |
Transmission Ratio |
Type |
Input Speed r/min |
Transmission Ratio |
Type |
Input Speed r/min |
Transmission Ratio |
H1SH3/5/7/ |
750 |
1.25-2 |
B2SH H2SH4/5/6/7/ |
750 |
5-9 |
B3SH H3SH4/5/6/7/8 |
750 |
12.5-112 |
224-5.6 |
10-28 |
|||||||
1000 |
1.25-2 |
1000 |
5-9 |
1000 |
12.5-112 |
|||
2.24-5.6 |
10-28 |
|||||||
1500 |
1.25-2 |
1500 |
5-6.3 |
1500 |
12.5-31.5 |
|||
4-5.6 |
7-9 |
35.5-56 |
||||||
|
|
10-16 |
63-112 |
|||||
18-28 |
|
Model selection for washing machine Gear Box Transmission:
Closely using the ideal reduction ratio.
Reduction ratio = servo motor speed / reducer output shaft speed
Torque calculation: Torque calculation is very important for the life of reducer, and pay attention to whether the maximum torque value (TP) of acceleration exceeds the maximum load torque of the reducer.
The applicable power is usually the applicable power of the servo models on the market, the applicability of the reducer is very high, the working coefficient can be maintained above 1.2, but the choice can also be based on their own needs to decide. industrial helical gearbox. H PV series High quality Right Angle Unique speed reducer HB helical gearbox / gear box.
Detailed Photos
Chinese Speed Reducer/industrial helical gearbox is a mechanical transmission in many fields of the national economy. The product categories covered by the industry include all kinds of gear reducer, planetary gear reducer and worm reducer, as well as various special transmission devices such as speed increasing device, speed control Devices, including various types of flexible transmission devices, such as compound transmission. Products and services in the field of metallurgy, nonferrous metals, coal, building materials, ships, water conservancy, electricity, construction machinery and petrochemical industries.
In all fields of national economy and national defense industry, gearbox products have a wide range of applications. Food light industry, electric machinery, construction machinery, metallurgy machinery, cement machinery, environmental protection machinery, electronic appliances, road construction machinery, water conservancy machinery, chemical machinery, mining machinery, conveyor machinery, building materials machinery, rubber machinery, petroleum machinery and other industries have strong demand of Reducer products.
Packaging & Shipping
Application
Driven machines | |||
Waste water treatment | Thickeners,filter presses,flocculation apparata,aerators,raking equipment,combined longitudinal and rotary rakes,pre-thickeners,screw pumps,water turbines,centrifugal pumps | Dredgers | Bucket conveyors, dumping devices, carterpillar travelling gears, bucket wheel excavators as pick up, bucket wheel excavator for primitive material, cutter head, traversing gears |
Chemical industry | Plate bending machines, extruders, dough mills, rubbers calenders, cooling drums, mixers for uniform media, agitators for media with uniform density, toasters, centrifuges | Metal working mills | plate tilters, ingot pushers, winding machines, cooling bed transfer frames, roller straigheners, table continuous intermittent, roller tables reversing tube mills, shears continuous, casting drivers, reversing CHINAMFG mills |
Metal working mills | Reversing slabbing mills. reversing wire mills, reversing sheet mills, reversing plate mill, roll adjustment drives | Conveyors | Bucket conveyors, hauling winches, hoists, belt conveyors, good lifts, passenger lifts, apron conveyors, escalators, rail travlling gears |
Frequency converters | Reciprocating compressors | ||
Cranes | Slewing gears, luffing gears, travelling gears, hoisting gear, derricking jib cranes | Cooling towers | Cooling tower fans, blowers axial and radial |
Cane sugar production | Cane knives, cane mills | Beet sugar production | Beet cossettes macerators, extraction plants, mechanical refrigerators, juice boilers, sugar beet washing machines, sugar beet cutter |
Paper machines | Pulper drives | Cableways | Material ropeways, continuous ropeway |
Cement industry | Concrete mixer, breaker, rotary kilns, tube mills, separators, roll crushers |
Company Profile
Established in 1995 , HangZhou Boji Machinery is a professional manufacturer and exporter that is concerned with the design, development and production of Gearbox Speed Reducer. We are located in HangZhou of ZheJiang Province, with convenient transportation access. With our own brand “TianQi”, all of our products comply with international quality standards and are greatly appreciated in a variety of different markets throughout the world.
Our company possesses complete machining center, lathe, gear shaping machine, gear milling machine, gear grinding machine and assembling lines. Our well-equipped facilities and excellent quality control throughout all stages of production enables us to guarantee total customer satisfaction.
Besides, In 2005,we attained ISO9001 certification. As a result of our high quality products and outstanding customer service, we have gained a global sales network CHINAMFG South America, Saudi Arabia, Vietnam, Pakistan, Philippines, South Africa and other countries and regions.
With rich export experience, high quality products, competitive prices, good service and in-time delivery, we certain that we can meet all of your requirement and exceed your expectations. Our feature is bright with new cooperative relationships with companies from all over the world. We look CHINAMFG to speaking with you to future discuss how we can be of service to you.
FAQ
1. Who are we?
We are the Factory, with over 25 years of production experience, based in ZheJiang , China, start from 1995,sell to Domestic Market(50.00%),Mid East(10.00%),Southeast Asia(10.00%),Western Europe(5.00%),South America(5.00%),Eastern Europe(5.00%),Eastern Asia(5.00%),North America(3.00%),Africa(2.00%),Southern Europe(2.00%),South Asia(2.00%),Central America(1.00%).
2. Can you customize according to our requirements?
Yes, we can design nonstandard products according to customer’s drawing and sample.
3.What can you buy from us?
speed reducer,gearbox,gear motor,pump,crusher
4. Why should you buy from us not from other suppliers?
Founded in 1995, with over 20 years of production experience and credibility. With professional engineer team, advanced technology production and skilled workers.Specialized in the production of reducer. Map sample processing business can be undertaken.
5. What services can we provide?
Accepted Delivery Terms: FOB,CFR,CIF,EXW,DDP,DDU,Express Delivery;
Accepted Payment Currency:USD,EUR,JPY,CAD,AUD,HKD,GBP,CNY,CHF;
Accepted Payment Type: T/T,L/C,Credit Card,PayPal,Western Union,Cash;
Language Spoken:English,Chinese,Spanish,Japanese,Portuguese,German,Arabic,French,Russian,Korean,Hindi,Italian
/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
Application: | Motor, Machinery, Manufacturing Plant |
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Hardness: | Hardened Tooth Surface |
Installation: | Horizontal Type |
Samples: |
US$ 1000/Piece
1 Piece(Min.Order) | Order Sample industrial gear units fertilizer spreader gearbox
|
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Customization: |
Available
| Customized Request |
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Shipping Cost:
Estimated freight per unit. |
about shipping cost and estimated delivery time. |
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Payment Method: |
|
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Initial Payment Full Payment |
Currency: | US$ |
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Return&refunds: | You can apply for a refund up to 30 days after receipt of the products. |
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Contribution of Industrial Gearboxes to Energy Efficiency
Industrial gearboxes play a significant role in enhancing energy efficiency across various machinery and equipment applications. Their contribution to energy efficiency is notable in several ways:
1. Speed and Torque Conversion: Industrial gearboxes facilitate the conversion of high-speed, low-torque input to low-speed, high-torque output. This conversion allows machinery to operate at optimal speeds while maintaining the required power, reducing energy wastage.
2. Matching Load and Power: Gearboxes enable the selection of the most efficient operating speed and torque for a specific load. This matching of load and power requirement minimizes excess energy consumption and enhances overall efficiency.
3. Load Distribution: In multi-component systems, gearboxes distribute the load among different components, ensuring an even distribution of work and preventing overloading. This load distribution helps avoid energy losses due to inefficient load handling.
4. Reducing Inefficiencies: Gearboxes help mitigate energy losses caused by mechanical inefficiencies in the transmission system. By optimizing gear design and reducing friction losses, gearboxes ensure effective power transmission.
5. Variable Speed Control: Some industrial gearboxes offer variable speed control, allowing machinery to operate at different speeds as required by the application. This flexibility enhances energy efficiency by adapting to changing operational demands.
6. Regenerative Braking: Certain gearbox systems, like regenerative gearboxes, enable the recovery of energy during braking or deceleration. This captured energy can be reused or fed back into the system, reducing overall energy consumption.
7. Improved Machine Design: Gearboxes contribute to the optimization of machine design, ensuring that components work together harmoniously. Properly designed gear systems minimize energy losses due to misalignment or improper component matching.
8. Reduced Heat Generation: Efficient gearboxes generate less heat during operation, minimizing energy losses associated with heat dissipation and improving overall energy efficiency.
9. Longer Equipment Lifespan: Properly selected and maintained gearboxes improve equipment reliability and lifespan. This prevents premature equipment failure and the associated energy waste from frequent repairs or replacements.
10. Energy Monitoring and Management: Some modern industrial gearboxes come with integrated sensors and monitoring systems that provide real-time data on energy consumption. This data helps operators optimize machinery usage for energy efficiency.
Collectively, these contributions highlight the vital role that industrial gearboxes play in enhancing energy efficiency, reducing energy consumption, and promoting sustainable operations across various industrial sectors.
Efficient Power Distribution and Motion Control with Industrial Gearboxes
Industrial gearboxes play a crucial role in ensuring efficient power distribution and precise motion control within mechanical systems. Here’s how they achieve these functions:
- Power Transmission: Industrial gearboxes efficiently transfer power from the input shaft to the output shaft through a series of gears with different tooth configurations. The gears mesh and transmit torque, allowing power to be distributed and converted at the desired speed and torque levels.
- Gear Ratio Selection: By choosing appropriate gear ratios, industrial gearboxes enable the adjustment of output speed and torque according to the application’s requirements. This flexibility allows for efficient power distribution based on specific operational needs.
- Reduction of Speed: In cases where high-speed input needs to be converted into low-speed output with increased torque, gearboxes use gear reduction to achieve the desired motion control. This is particularly beneficial for heavy-duty applications requiring precision and controlled movement.
- Increase in Torque: Conversely, industrial gearboxes can increase torque while reducing speed, which is valuable for applications requiring high force output, such as heavy lifting or material processing.
- Motion Control: Gearboxes provide precise control over the motion of machinery by adjusting speed and torque. This is essential for tasks that demand accurate positioning, synchronization, and coordination of components.
- Directional Changes: Some gearbox designs, such as bevel or worm gearboxes, enable changes in motion direction. This capability is crucial for applications involving complex motion patterns or reversing movements.
- Consistency and Reliability: Industrial gearboxes ensure consistent power distribution and motion control over prolonged periods, contributing to the reliability and stability of mechanical systems.
Overall, industrial gearboxes optimize power distribution and motion control, enhancing the efficiency, accuracy, and performance of various machinery and equipment across different industries.
Benefits of Using an Industrial Gearbox in Heavy-Duty Applications
An industrial gearbox offers several benefits when used in heavy-duty applications, where robust and reliable power transmission is essential:
- High Torque Handling: Industrial gearboxes are designed to handle high levels of torque, making them well-suited for heavy-duty tasks that require substantial force and power.
- Durability and Longevity: Heavy-duty gearboxes are constructed from rugged materials and designed to withstand harsh operating conditions, ensuring extended service life and reduced maintenance requirements.
- Load Distribution: Gearboxes distribute the load across multiple gears, reducing the strain on individual components and promoting even wear, which is crucial in heavy-duty applications.
- Efficient Power Transmission: Industrial gearboxes efficiently transmit power between input and output shafts, ensuring minimal power loss and maximizing overall system efficiency.
- Flexibility in Speed and Torque: Heavy-duty gearboxes offer the flexibility to adjust speed and torque by selecting appropriate gear ratios, allowing for precise control over machinery performance.
- Adaptability to Varying Conditions: Industrial gearboxes can adapt to changing load conditions, making them suitable for applications with fluctuating requirements.
- Reduced Downtime: The durability and reliability of industrial gearboxes contribute to reduced downtime and increased operational uptime, enhancing productivity.
- Customization: Gearboxes can be customized to meet specific heavy-duty application needs, ensuring optimal performance and compatibility.
Overall, industrial gearboxes play a pivotal role in heavy-duty applications by providing robust power transmission, durability, and versatility to meet the demands of challenging tasks.
editor by CX 2024-05-02
China Standard High Power 1000kw H Series Parallel Shaft Industrial Gear Box gearbox engine
Product Description
Helical Bevel gearbox
H.B series gear units adopt currency layout and may transform into speral reducer according to customer’s requirement.
The housing of 1 size can realize parallel shaft,right-angle shaft models and horizonal,vertical mounting modes.Variety of components is reducible,the number of reducer’s mode is augmentable.
Sound-absorbable structure,large surface,big fan reduce temperature and noise,advanced grinding process of cylindrical gear and bevel gear improve stability and transmit power more efficeintly.
Input mode:motor connected flange,shaft input.
Output mode:solid shaft with flat key,hollow shaft with flat key,hollow shaft with shrink disk,hollow or CHINAMFG shaft with involute splines,solid shaft with flange.
Mounting mode:Foot-mounted,glange-mounted,swing base-mounted,torque-arm-mounted.
H.B series include size 3~26,number of stages is 1~4,ratio is 1.25~450,combing with R series and K series,ratio will be higher.
High precision grade with Gleason and Hofler grinding machineBetter meshing of gearsTop brands bearings and oil sealLong work lifeLow noiseNo oil leakageCompact design, strong and solidBetter cooling propertyCustomized design avaialbeDiversified range catering for power.
RFQ
Q:Are you trading company or manufacturer?
A: We are manufacturer with over 20 years’ experience.
Q: How long is your delivery time?
A: Generally it is within 10 days if the goods are in stock, for goods produced as per order, it is within 35 days after confirmation of order.
Q: How long should I wait for the feedback after I send the enquiry?
A: Normally within 12 hours.
Q: What information should I give you to confirm the product?
A: Model/Size, Transmission Ratio, Speed, Shaft directions & Order quantity etc.
Q: Hong long is your product warranty?
A: We offer 12 months warranty from departure date of the goods.
Q: What is your payment terms? T/T 100% in advance for amount less than USD10000.-, 30% T/T in advance , balance before shipment for amount above USD10000.
If you have any other questions, please feel free to contact us below:
HOW TO CONTACT US?
Send your Inquiry Details in the Below, click “Send” Now! /* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
Application: | Motor, Machinery |
---|---|
Function: | Distribution Power, Change Drive Torque, Change Drive Direction, Speed Changing, Speed Reduction |
Layout: | H, Hb |
Hardness: | Hardened Tooth Surface |
Installation: | Horizontal Type |
Step: | Four-Step |
Customization: |
Available
| Customized Request |
---|
Considerations for Choosing Lubrication for Industrial Gearboxes
Choosing the right lubrication for industrial gearboxes is crucial for ensuring optimal performance, longevity, and efficiency. Several important considerations should be taken into account when selecting lubrication:
1. Operating Conditions: The operating environment, including temperature, humidity, and contaminants, affects the choice of lubrication. Extreme temperatures may require lubricants with specific temperature ranges.
2. Load and Torque: The magnitude of load and torque influences the selection of lubrication with appropriate viscosity and film strength to provide effective protection under varying conditions.
3. Speed and RPM: Gearbox speed and RPM determine the lubrication’s ability to maintain a stable lubricating film between gear teeth and other components.
4. Lubrication Interval: Consider the required lubrication frequency and intervals. Some applications may demand lubricants with longer service intervals to minimize downtime.
5. Gearbox Type: Different gearbox designs, such as helical, bevel, or worm, may have varying lubrication requirements due to differences in gear engagement and motion.
6. Compatibility: Ensure the selected lubricant is compatible with the gearbox materials, seals, and components to prevent degradation or damage.
7. Contamination Control: Lubricants should possess effective anti-contamination properties to minimize the risk of particles or debris affecting gearbox performance.
8. Water Resistance: In applications exposed to water or moisture, water-resistant lubricants help prevent corrosion and maintain proper lubrication properties.
9. Additives: Some lubricants include additives that enhance performance, such as anti-wear, anti-foam, and extreme pressure additives.
10. Environmental Considerations: Evaluate the environmental impact of the chosen lubrication, including disposal and potential harm to the ecosystem.
11. Manufacturer Recommendations: Follow the gearbox manufacturer’s recommendations and guidelines for lubrication type, viscosity, and maintenance practices.
Choosing the appropriate lubrication involves a comprehensive assessment of these factors, ensuring that the lubricant selected is well-suited for the specific demands of the industrial gearbox and its application.
Drawbacks and Limitations of Industrial Gearbox Systems
While industrial gearbox systems offer numerous benefits, they also come with certain drawbacks and limitations:
1. Size and Weight: Industrial gearboxes can be large and heavy, which may require additional space and structural support in machinery design.
2. Efficiency Loss: Gearboxes can introduce energy losses due to friction and heat generation, especially in applications with high-speed rotations.
3. Maintenance Requirements: Gearboxes need regular maintenance to ensure optimal performance, including lubrication, gear inspections, and potential replacement of worn components.
4. Cost: The design, manufacturing, and installation of industrial gearbox systems can be expensive, especially for custom or specialized solutions.
5. Noise and Vibration: Gearboxes can generate noise and vibration, which may require additional measures for noise reduction and vibration damping.
6. Limited Operating Range: Each gearbox has a specific torque and speed range where it operates efficiently. Operating outside these limits can lead to reduced performance and potential damage.
Despite these limitations, industrial gearbox systems remain essential components in many industries due to their ability to efficiently transmit power, control motion, and adapt to various applications.
Variations in Industrial Gearbox Designs for Specific Tasks
Industrial gearbox designs can vary significantly based on the specific tasks and applications they are intended for. Different industries and applications have unique requirements, and gearbox designs are tailored to meet those needs. Here are some variations in industrial gearbox designs for specific tasks:
- Helical Gearboxes: Helical gearboxes are known for their efficiency and smooth operation. They are commonly used in applications where precision, low noise, and high efficiency are required, such as conveyors, pumps, and compressors.
- Bevel Gearboxes: Bevel gearboxes are suitable for transmitting power between non-parallel shafts, making them ideal for applications like printing presses, packaging machinery, and woodworking equipment.
- Worm Gearboxes: Worm gearboxes offer high torque multiplication and are often used in heavy-duty applications such as mining equipment, elevators, and material handling systems.
- Planetary Gearboxes: Planetary gearboxes provide excellent power-to-weight ratios and compact designs. They are commonly used in robotics, precision machinery, and aerospace applications.
- Parallel Shaft Gearboxes: Parallel shaft gearboxes are versatile and can handle a wide range of applications, including conveyors, mixers, agitators, and industrial fans.
- Right-Angle Gearboxes: Right-angle gearboxes are designed to transmit power at a 90-degree angle, making them suitable for applications such as paper mills, textile machinery, and cooling towers.
The design variations take into account factors such as load distribution, torque requirements, operating speeds, space constraints, and environmental conditions. Industrial gearbox manufacturers offer a variety of options to ensure that the gearbox design aligns with the specific tasks and challenges of the intended application, ultimately enhancing performance, reliability, and efficiency.
editor by CX 2024-04-19
China manufacturer High Power Industrial Parallel Shaft Gear Box Reducer Electric Motor Reduction Gearbox cycloidal gearbox
Product Description
Why Choose Us
Product Details
Type |
Worm Gear Speed Reducer/ gearbox |
Model |
WMRV 25/30/40/50/63/75/90/110/130/150/185 |
Ratio |
7.5,10,15,20,25,30,40,50,60,80,100. |
Color |
Blue(RAL5571)/Silver grey (K9149) Or On Customer Request |
Material |
Housing: Aluminum alloy(size 25~90) / Cast iron(size 110~185) |
Worm wheel: Aluminum Bronze or Tin Bronze |
|
Worm shaft: 20CrMn Ti | |
Output Shaft: steel-45# |
|
Packing |
Carton, Honey Comb Carton, Wooden Case with wooden pallet |
Warranty | 1 Year |
Input Power | 0.09kw,0.18kw,1.1KW,1.5KW,2.2KW,3KW,4KW,5.5KW,7.5KW,11Kw and so on. |
Usages | Industrial Machine: Food Stuff, Ceramics, CHEMICAL, Packing, Dyeing,Wood working, Glass. |
IEC Flange | IEC standard flange or on customer request |
Lubricant | Synthetic oil or worm gear oil |
Company Profile
Exhibition
Customized Service
Certificate&Honor
Customer Comments
FAQ
1. How to choose a gearbox which meets our requirement?
You can refer to our catalogue to choose the gearbox or we can help to choose when you provide
the technical information of required output torque, output speed and motor parameter etc.
2. What information shall we give before placing a purchase order?
a) Type of the gearbox, ratio, input and output type, input flange, mounting position, and motor information etc.
b) Housing color.
c) Purchase quantity.
d) Other special requirements.
3. What industries are your gearboxes being used?
Our gearboxes are widely used in the areas of textile, food processing, beverage, chemical industry,
escalator,automatic storage equipment, metallurgy, tabacco, environmental protection, logistics and etc.
4. Do you sell motors?
We have stable motor suppliers who have been cooperating with us for a long-time. They can provide motors
with high quality.
/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
Application: | Motor, Machinery, Agricultural Machinery |
---|---|
Hardness: | Hardened Tooth Surface |
Installation: | 90 Degree |
Layout: | Coaxial |
Gear Shape: | Worm |
Step: | Double-Step |
Samples: |
US$ 25/Piece
1 Piece(Min.Order) | |
---|
Customization: |
Available
| Customized Request |
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Real-World Examples of Industrial Gearbox Applications
Industrial gearbox technology finds widespread use in a diverse range of products and applications across various industries. Some real-world examples include:
1. Wind Turbines: Industrial gearboxes are integral components in wind turbines, where they transmit the rotational energy of the wind turbine’s blades to the generator at an optimal speed to produce electricity.
2. Conveyor Systems: Gearboxes are used in conveyor systems to control the speed and direction of material handling, ensuring efficient movement of goods in industries like manufacturing, logistics, and mining.
3. Mining Equipment: Heavy-duty machinery in the mining industry, such as crushers, excavators, and loaders, rely on industrial gearboxes for torque multiplication and efficient power transmission.
4. Construction Machinery: Cranes, excavators, and concrete mixers utilize industrial gearboxes to manage heavy loads and perform precise movements in construction projects.
5. Marine Propulsion: Ships and vessels use gearboxes in their propulsion systems to convert the high-speed rotation of the engines into the lower-speed rotation needed by the propellers.
6. Automotive Industry: Gearboxes are found in vehicles to transmit power from the engine to the wheels, enabling speed variation and torque multiplication.
7. Food Processing: Industrial gearboxes play a role in various stages of food processing, such as mixing, grinding, and packaging, ensuring efficient and controlled movement of ingredients and products.
8. Paper and Pulp Industry: Gearboxes are used in paper mills for processes like pulping, refining, and paper machine operations, where precise control and torque management are essential.
9. Steel and Metal Processing: Gearboxes are vital in metal processing equipment like rolling mills and extruders, enabling the shaping and forming of metals at varying speeds and forces.
10. Textile Machinery: In textile manufacturing, industrial gearboxes are employed in machines for spinning, weaving, and knitting, facilitating the intricate movements required for fabric production.
11. Agriculture: Tractors and other agricultural machinery utilize gearboxes to control the speed and power required for tasks such as plowing, tilling, and harvesting.
12. Renewable Energy: Beyond wind turbines, industrial gearboxes are used in other renewable energy systems like hydroelectric power plants and solar tracking mechanisms.
These examples showcase the versatility and importance of industrial gearbox technology in various sectors, where they enable efficient power transmission, motion control, and the reliable operation of critical machinery.
Drawbacks and Limitations of Industrial Gearbox Systems
While industrial gearbox systems offer numerous benefits, they also come with certain drawbacks and limitations:
1. Size and Weight: Industrial gearboxes can be large and heavy, which may require additional space and structural support in machinery design.
2. Efficiency Loss: Gearboxes can introduce energy losses due to friction and heat generation, especially in applications with high-speed rotations.
3. Maintenance Requirements: Gearboxes need regular maintenance to ensure optimal performance, including lubrication, gear inspections, and potential replacement of worn components.
4. Cost: The design, manufacturing, and installation of industrial gearbox systems can be expensive, especially for custom or specialized solutions.
5. Noise and Vibration: Gearboxes can generate noise and vibration, which may require additional measures for noise reduction and vibration damping.
6. Limited Operating Range: Each gearbox has a specific torque and speed range where it operates efficiently. Operating outside these limits can lead to reduced performance and potential damage.
Despite these limitations, industrial gearbox systems remain essential components in many industries due to their ability to efficiently transmit power, control motion, and adapt to various applications.
Types of Industrial Gearboxes and Their Functions
Industrial gearboxes come in various types, each designed for specific functions and applications. Here are some common types of industrial gearboxes and their functions:
- Helical Gearbox: Helical gearboxes have helical gears that provide smooth and quiet operation. They are suitable for applications requiring high efficiency and moderate to high torque transmission.
- Bevel Gearbox: Bevel gearboxes have bevel gears that transmit power between intersecting shafts at different angles. They are used in applications such as right-angle power transmission.
- Worm Gearbox: Worm gearboxes consist of a worm gear and a worm wheel. They offer high reduction ratios and are commonly used for applications where precise speed reduction is required.
- Planetary Gearbox: Planetary gearboxes feature planetary gears arranged around a central sun gear. They offer high torque density and are used in applications requiring compact size and high efficiency.
- Spur Gearbox: Spur gearboxes have straight-cut teeth and are suitable for applications with parallel shafts. They offer simple and cost-effective power transmission.
- Parallel Shaft Gearbox: Parallel shaft gearboxes transmit power between parallel shafts. They are versatile and used in a wide range of industrial applications.
- Right-Angle Gearbox: Right-angle gearboxes transmit power between shafts that are positioned at a 90-degree angle. They are used when space constraints or specific configurations require such an arrangement.
- Helical-Bevel Gearbox: Helical-bevel gearboxes combine the features of helical and bevel gearboxes, offering both efficiency and the ability to handle right-angle power transmission.
- Helical-Worm Gearbox: Helical-worm gearboxes combine helical and worm gearsets. They provide high reduction ratios and are suitable for applications requiring high torque and moderate efficiency.
Each type of industrial gearbox has its own unique characteristics and functions, making them suitable for specific industrial tasks and requirements.
editor by CX 2024-03-29
China Professional Parallel Shaft Reductor High Torque CZPT Type Industrial Hollow Shaft Gear Box gearbox engine
Product Description
Flender Type Industrial Gear Box Unit Gearbox Manufacturer Price Helical Bevel Right Angle Big Reducer
Product Description
1. High efficiency and save power.
2. Wide speed ranges and high torque.
3. Multi-structure, various assembling methods.
4. High loading support, stable transmitting, and low noise level.
5. Excellent sealing, a wide range of industry applications.
6. It adopts various cooling and lubricating modes.
General Specification
ANG HB Industrial Gear Reducer | |
Type | Helical parallel shaft type, Bevel-helical right-angle type |
Model | H1/B1~H26/B26 |
Input power | 3 ~ 5000 KW; |
Input speed | 750rpm 1000rpm 1500rpm |
Reduction ratio | 1/1.25 ~ 1/450 |
Output torque | 3 ~ 900kN.m |
Install type | Foot / CHINAMFG shaft / Hollow shaft / Output flange… |
Efficiency | Single-stage 98%, 2-stage 96%, 3-stage 94%, 4-stage 92% |
Precision of gear | Accurate grinding, class 6 |
Design position | A / B / C / D / E / F / G / H / I |
Accessories | Backstop / Cooling fan / Cooling coil / Oil pump / Compensation tank … |
Typical Applications
Coal mining
Power Plant Equipment
Metallurgical Industry
Metal Forming Machinery
Petrochemical Industry
Mining Machine
Hoisting Machinery
Cement and Construction Industry
Environmental Protection Industry
Cable Industry
Chemical industry
Food Machinery
Paper Machinery
Typical Models
Horizontal:
Parallel shaft gear unit box
H1SH1, H1SH3, H1SH5, H1SH7, H1SH9, H1SH11, H1SH13, H1SH15, H1SH17, H1SH19
H2SH, H2HH, H2DH, H2KH, H2FH, H3SH, H3HH, H3DH, H3HM, H3DM, H4SH, H4HH, H4DH, H4HM, H4DM
Bevel helical right angle gear unit
B2SH, B2HH, B2DH, B2HM, B2DM, B3SH, B3HH, B3DH, B3HM, B3DM, B4SH, B4HH, B4DH, B4HM, B4DM
Vertical:
Parallel shaft gear unit box
H2SV, H2HV, H2DV, H3SV, H3DV, H4SV, H4HV, H4DV, H4KV, H4FV
Bevel helical right angle gear unit
B2SV, B2HV, B2DV, B3SV, B3HV, B3DV, B4SV, B4HV, B4DV, B4KV, B4FV
Detailed Photos
Related Product
Our Advantages
Company Profile
FAQ
Q: Can you make the gear reducer with customization?
A: Yes, we can customize per your request, like flange, shaft, configuration, material, etc.
Q: Do you provide samples?
A: Yes. A sample is available for testing.
Q: What’s your lead time?
A: Standard products need 5-30 days, a bit longer for customized products.
Q: Do you provide technology support?
A: Yes. Our company has a design and development team, we can provide technology support if you
need.
Q: How to ship to us?
A: It is available by air, by sea, or by train.
Q: How to pay the money?
A: T/T and L/C are preferred, with a different currency, including USD, EUR, RMB, etc.
Q: How can I know if the product is suitable for me?
A: > 1st confirm drawing and specification >2nd test sample >3rd start mass production.
Q: Can I come to your company to visit?
A: Yes, you are welcome to visit us at any time.
Q: How shall we contact you?
A: You can send an inquiry directly, and we will respond within 24 hours.
/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
Application: | Motor, Machinery, Marine, Agricultural Machinery, Conveyor Presser Aerator Pump Turbine Extruder |
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Hardness: | Soft or Hardened Tooth Surface |
Installation: | Horizontal Type |
Samples: |
US$ 500/Piece
1 Piece(Min.Order) | Order Sample Blue or grey
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Customization: |
Available
| Customized Request |
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.shipping-cost-tm .tm-status-off{background: none;padding:0;color: #1470cc}
Shipping Cost:
Estimated freight per unit. |
about shipping cost and estimated delivery time. |
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Payment Method: |
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Initial Payment Full Payment |
Currency: | US$ |
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Return&refunds: | You can apply for a refund up to 30 days after receipt of the products. |
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Ensuring Precision of Gear Tooth Profiles in Industrial Gearboxes
Manufacturers take several measures to ensure the precision of gear tooth profiles in industrial gearboxes:
1. Precision Machining: Gear tooth profiles are machined using advanced CNC (Computer Numerical Control) machines that provide high accuracy and consistency in cutting the gear teeth.
2. Quality Materials: High-quality materials with excellent wear resistance and durability are used to fabricate gears, minimizing the risk of deformation or inaccuracies during operation.
3. Tooth Profile Design: Engineers use specialized software and tools to design gear tooth profiles that minimize tooth stress, ensure proper meshing, and reduce noise and vibration.
4. Heat Treatment: Gears undergo heat treatment processes to improve hardness and wear resistance, enhancing the precision and longevity of the tooth profiles.
5. Tooth Inspection: Gear tooth profiles undergo rigorous inspection using techniques such as coordinate measuring machines (CMMs) and gear measuring instruments to verify dimensional accuracy.
6. Quality Control: Manufacturers implement stringent quality control procedures throughout the manufacturing process to identify and rectify any deviations from the specified gear tooth profiles.
7. Continuous Improvement: Manufacturers invest in research and development to refine gear manufacturing processes, incorporate advanced technologies, and improve the precision of gear tooth profiles.
By following these practices, manufacturers ensure that the gear tooth profiles in industrial gearboxes meet strict quality standards, resulting in reliable and efficient performance in various applications.
Industrial Gearboxes: Handling Shock Loads and Variations in Torque
Industrial gearboxes are designed to handle shock loads and variations in torque through their robust construction and careful engineering:
Shock Load Handling: Industrial gearboxes are equipped to withstand sudden and high-impact forces that can occur during start-up, sudden stops, or unexpected changes in the load. The design often includes durable materials, precision-machined components, and reinforced housing to absorb and distribute the impact, preventing damage to the gearbox and other connected components.
Variations in Torque: Industrial gearboxes are engineered to handle variations in torque by utilizing different gear ratios and gear stages. When torque requirements change, the gearbox adjusts the interaction between gears to ensure the desired output torque is achieved. This ability to manipulate torque allows the gearbox to adapt to varying load conditions without compromising efficiency or reliability.
By providing effective shock load absorption and torque adjustment, industrial gearboxes enhance the overall durability and performance of mechanical systems. Their ability to handle these challenges makes them crucial components in applications where sudden loads and torque variations are common.
Contribution of Industrial Gearboxes to Power Transmission
Industrial gearboxes play a vital role in power transmission within mechanical systems by efficiently transmitting torque and speed between input and output shafts. They contribute to power transmission through the following mechanisms:
- Gear Reduction: Industrial gearboxes use gears of different sizes to achieve gear reduction, where the output shaft rotates at a lower speed than the input shaft. This results in an increase in torque, allowing the gearbox to handle heavy loads and challenging tasks.
- Gear Multiplication: In some cases, gearboxes can achieve gear multiplication, where the output shaft rotates at a higher speed than the input shaft. While torque is reduced, this configuration is useful for applications requiring high-speed output.
- Changing Direction: Gearboxes can change the direction of rotation between input and output shafts. This feature is valuable for machinery that requires rotational direction reversal, such as vehicles, cranes, and conveyors.
- Torque Conversion: By adjusting the gear ratios, industrial gearboxes can convert torque from one level to another, enabling efficient power transmission to meet specific operational requirements.
- Speed Control: Industrial gearboxes allow for precise control over the speed of machinery. By selecting appropriate gear ratios, operators can ensure that equipment operates at the desired speed for optimal performance.
- Adapting to Load Conditions: Industrial gearboxes can adapt to varying load conditions by adjusting gear ratios. This adaptability is essential for machinery that experiences changing load demands during operation.
Industrial gearboxes are crucial components in mechanical systems across various industries, enabling efficient and effective power transmission for a wide range of applications.
editor by CX 2024-03-28
China factory Right Angle Hollow Shaft Gear Reducer Industrial Transmission Worm Gearbox differential gearbox
Product Description
Product Description
Main Materials:
1)housing:aluminium alloy ADC12(size 571-090); die cast iron HT200(size 110-150);
2)Worm:20Cr, ZI Involute profile; carbonize&quencher heat treatment make gear surface hardness up to 56-62 HRC; After precision grinding, carburization layer’s thickness between 0.3-0.5mm.
3)Worm Wheel:wearable stannum alloy CuSn10-1
Detailed Photos
Combination Options:
Input:with input shaft, With square flange,With IEC standard input flange
Output:with torque arm, output flange, single output shaft, double output shaft, plastic cover
Worm reducers are available with diffferent combinations: NMRV+NMRV, NMRV+NRV, NMRV+PC, NMRV+UDL, NMRV+MOTORS
Exploded View:
Product Parameters
Old Model |
New Model | Ratio | Center Distance | Power | Input Dia. | Output Dia. | Output Torque | Weight |
RV571 | 7.5~100 | 25mm | 0.06KW~0.12KW | Φ9 | Φ11 | 21N.m | 0.7kgs | |
RV030 | RW030 | 7.5~100 | 30mm | 0.06KW~0.25KW | Φ9(Φ11) | Φ14 | 45N.m | 1.2kgs |
RV040 | RW040 | 7.5~100 | 40mm | 0.09KW~0.55KW | Φ9(Φ11,Φ14) | Φ18(Φ19) | 84N.m | 2.3kgs |
RV050 | RW050 | 7.5~100 | 50mm | 0.12KW~1.5KW | Φ11(Φ14,Φ19) | Φ25(Φ24) | 160N.m | 3.5kgs |
RV063 | RW063 | 7.5~100 | 63mm | 0.18KW~2.2KW | Φ14(Φ19,Φ24) | Φ25(Φ28) | 230N.m | 6.2kgs |
RV075 | RW075 | 7.5~100 | 75mm | 0.25KW~4.0KW | Φ14(Φ19,Φ24,Φ28) | Φ28(Φ35) | 410N.m | 9.0kgs |
RV090 | RW090 | 7.5~100 | 90mm | 0.37KW~4.0KW | Φ19(Φ24,Φ28) | Φ35(Φ38) | 725N.m | 13.0kgs |
RV110 | RW110 | 7.5~100 | 110mm | 0.55KW~7.5KW | Φ19(Φ24,Φ28,Φ38) | Φ42 | 1050N.m | 35.0kgs |
RV130 | RW130 | 7.5~100 | 130mm | 0.75KW~7.5KW | Φ24(Φ28,Φ38) | Φ45 | 1550N.m | 48.0kgs |
RV150 | RW150 | 7.5~100 | 150mm | 2.2KW~15KW | Φ28(Φ38,Φ42) | Φ50 | 84.0kgs |
GMRV Outline Dimension:
GMRV | A | B | C | C1 | D(H8) | E(h8) | F | G | G1 | H | H1 | I | M | N | O | P | Q | R | S | T | BL | β | b | t | V |
030 | 80 | 97 | 54 | 44 | 14 | 55 | 32 | 56 | 63 | 65 | 29 | 55 | 40 | 57 | 30 | 75 | 44 | 6.5 | 21 | 5.5 | M6*10(n=4) | 0° | 5 | 16.3 | 27 |
040 | 100 | 121.5 | 70 | 60 | 18(19) | 60 | 43 | 71 | 78 | 75 | 36.5 | 70 | 50 | 71.5 | 40 | 87 | 55 | 6.5 | 26 | 6.5 | M6*10(n=4) | 45° | 6 | 20.8(21.8) | 35 |
050 | 120 | 144 | 80 | 70 | 25(24) | 70 | 49 | 85 | 92 | 85 | 43.5 | 80 | 60 | 84 | 50 | 100 | 64 | 8.5 | 30 | 7 | M8*12(n=4) | 45° | 8 | 28.3(27.3) | 40 |
063 | 144 | 174 | 100 | 85 | 25(28) | 80 | 67 | 103 | 112 | 95 | 53 | 95 | 72 | 102 | 63 | 110 | 80 | 8.5 | 36 | 8 | M8*12(n=8) | 45° | 8 | 28.3(31.3) | 50 |
075 | 172 | 205 | 120 | 90 | 28(35) | 95 | 72 | 112 | 120 | 115 | 57 | 112.5 | 86 | 119 | 75 | 140 | 93 | 11 | 40 | 10 | M8*14(n=8) | 45° | 8(10) | 31.3(38.3) | 60 |
090 | 206 | 238 | 140 | 100 | 35(38) | 110 | 74 | 130 | 140 | 130 | 67 | 129.5 | 103 | 135 | 90 | 160 | 102 | 13 | 45 | 11 | M10*16(n=8) | 45° | 10 | 38.3(41.3) | 70 |
110 | 255 | 295 | 170 | 115 | 42 | 130 | – | 144 | 155 | 165 | 74 | 160 | 127.5 | 167.5 | 110 | 200 | 125 | 14 | 50 | 14 | M10*18(n=8) | 45° | 12 | 45.3 | 85 |
130 | 293 | 335 | 200 | 120 | 45 | 180 | – | 155 | 170 | 215 | 81 | 179 | 146.5 | 187.5 | 130 | 250 | 140 | 16 | 60 | 15 | M12*20(n=8) | 45° | 14 | 48.8 | 100 |
150 | 340 | 400 | 240 | 145 | 50 | 180 | – | 185 | 200 | 215 | 96 | 210 | 170 | 230 | 150 | 250 | 180 | 18 | 72.5 | 18 | M12*22(n=8) | 45° | 14 | 53.8 | 120 |
Company Profile
About CHINAMFG Transmission:
We are a professional reducer manufacturer located in HangZhou, ZHangZhoug province.
Our leading products is full range of RV571-150 worm reducers , also supplied GKM hypoid helical gearbox, GRC inline helical gearbox, PC units, UDL Variators and AC Motors, G3 helical gear motor.
Products are widely used for applications such as: foodstuffs, ceramics, packing, chemicals, pharmacy, plastics, paper-making, construction machinery, metallurgic mine, environmental protection engineering, and all kinds of automatic lines, and assembly lines.
With fast delivery, superior after-sales service, advanced producing facility, our products sell well both at home and abroad. We have exported our reducers to Southeast Asia, Eastern Europe and Middle East and so on.Our aim is to develop and innovate on basis of high quality, and create a good reputation for reducers.
Packing information:Plastic Bags+Cartons+Wooden Cases , or on request
We participate Germany Hannver Exhibition-ZheJiang PTC Fair-Turkey Win Eurasia
Logistics
After Sales Service
1.Maintenance Time and Warranty:Within 1 year after receiving goods.
2.Other Service: Including modeling selection guide, installation guide, and problem resolution guide, etc.
FAQ
1.Q:Can you make as per customer drawing?
A: Yes, we offer customized service for customers accordingly. We can use customer’s nameplate for gearboxes.
2.Q:What is your terms of payment ?
A: 30% deposit before production,balance T/T before delivery.
3.Q:Are you a trading company or manufacturer?
A:We are a manufacurer with advanced equipment and experienced workers.
4.Q:What’s your production capacity?
A:8000-9000 PCS/MONTH
5.Q:Free sample is available or not?
A:Yes, we can supply free sample if customer agree to pay for the courier cost
6.Q:Do you have any certificate?
A:Yes, we have CE certificate and SGS certificate report.
Contact information:
Ms Lingel Pan
For any questions just feel free ton contact me. Many thanks for your kind attention to our company!
Application: | Motor, Machinery, Marine, Agricultural Machinery, Industry |
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Hardness: | Hardened Tooth Surface |
Installation: | Horizontal Type |
Layout: | Right Angle |
Gear Shape: | Worm Gear |
Step: | Double-Step |
Samples: |
US$ 12/Piece
1 Piece(Min.Order) | |
---|
Customization: |
Available
| Customized Request |
---|
Considerations for Choosing Lubrication for Industrial Gearboxes
Choosing the right lubrication for industrial gearboxes is crucial for ensuring optimal performance, longevity, and efficiency. Several important considerations should be taken into account when selecting lubrication:
1. Operating Conditions: The operating environment, including temperature, humidity, and contaminants, affects the choice of lubrication. Extreme temperatures may require lubricants with specific temperature ranges.
2. Load and Torque: The magnitude of load and torque influences the selection of lubrication with appropriate viscosity and film strength to provide effective protection under varying conditions.
3. Speed and RPM: Gearbox speed and RPM determine the lubrication’s ability to maintain a stable lubricating film between gear teeth and other components.
4. Lubrication Interval: Consider the required lubrication frequency and intervals. Some applications may demand lubricants with longer service intervals to minimize downtime.
5. Gearbox Type: Different gearbox designs, such as helical, bevel, or worm, may have varying lubrication requirements due to differences in gear engagement and motion.
6. Compatibility: Ensure the selected lubricant is compatible with the gearbox materials, seals, and components to prevent degradation or damage.
7. Contamination Control: Lubricants should possess effective anti-contamination properties to minimize the risk of particles or debris affecting gearbox performance.
8. Water Resistance: In applications exposed to water or moisture, water-resistant lubricants help prevent corrosion and maintain proper lubrication properties.
9. Additives: Some lubricants include additives that enhance performance, such as anti-wear, anti-foam, and extreme pressure additives.
10. Environmental Considerations: Evaluate the environmental impact of the chosen lubrication, including disposal and potential harm to the ecosystem.
11. Manufacturer Recommendations: Follow the gearbox manufacturer’s recommendations and guidelines for lubrication type, viscosity, and maintenance practices.
Choosing the appropriate lubrication involves a comprehensive assessment of these factors, ensuring that the lubricant selected is well-suited for the specific demands of the industrial gearbox and its application.
Factors to Consider When Selecting the Right Industrial Gearbox for an Application
Choosing the appropriate industrial gearbox for a specific application requires careful consideration of various factors to ensure optimal performance, reliability, and efficiency. Here are the key factors to consider:
- Load and Torque Requirements: Determine the maximum load and torque the gearbox will need to handle in the application.
- Speed Range: Consider the required speed range for both input and output shafts.
- Operating Conditions: Evaluate the environmental conditions, such as temperature, humidity, and presence of dust or chemicals.
- Space Constraints: Take into account the available installation space and clearance requirements.
- Efficiency: Choose a gearbox with the appropriate efficiency rating to minimize power losses.
- Noise and Vibration: Consider noise and vibration levels, especially in applications where low noise is crucial.
- Service and Maintenance: Assess ease of maintenance, accessibility for repairs, and availability of replacement parts.
- Mounting and Alignment: Ensure compatibility with the existing machinery and proper shaft alignment.
- Cost and Budget: Balance performance requirements with budget constraints.
- Expected Lifespan: Choose a gearbox with a suitable lifespan for the application’s durability needs.
- Gearbox Type: Select the appropriate gearbox type (helical, bevel, worm, etc.) based on the application’s specific requirements.
By carefully considering these factors and consulting with gearbox experts, you can make an informed decision and choose the right industrial gearbox that meets the unique demands of your application.
Industrial Gearbox: Definition and Applications
An industrial gearbox is a mechanical device designed to transmit power and torque between input and output shafts while changing the speed and direction of rotation. It consists of a set of gears enclosed in a housing to protect the components and facilitate lubrication. Industrial gearboxes find wide-ranging applications across various industries:
- Manufacturing: Gearboxes are used in manufacturing processes for tasks like material handling, conveyor systems, and assembly line automation.
- Energy Generation: Wind turbines, hydroelectric plants, and thermal power plants utilize gearboxes to adapt rotational speeds and transmit power between turbines and generators.
- Construction: In construction equipment such as cranes, excavators, and concrete mixers, gearboxes play a crucial role in converting engine power into mechanical motion.
- Automotive: Vehicles require gearboxes to transfer power from engines to wheels, providing various speed options for different driving conditions.
- Agriculture: Tractors and agricultural machinery utilize gearboxes for tasks like plowing, seeding, and harvesting.
- Mining: Mining equipment, including conveyor systems and heavy machinery, rely on gearboxes to handle the demanding conditions of mineral extraction.
- Marine: Gearboxes are essential in marine applications, such as propulsion systems for ships and boats.
- Food and Beverage: Conveyors, mixers, and processing equipment in the food and beverage industry utilize gearboxes for controlled movement and processing.
- Oil and Gas: Drilling rigs, pumps, and extraction machinery in the oil and gas sector use gearboxes to handle high torque and speed requirements.
Industrial gearboxes ensure efficient power transmission and enable machinery to perform specific tasks at optimal speeds. Their versatility and reliability make them integral components in various industrial processes and equipment.
editor by CX 2023-10-21
China Professional Parallel Shaft Reductor High Torque Gear Unit Price CZPT Type Industrial Hollow Shaft Gear Box with Great quality
Product Description
Flender Type Industrial Gear Box Unit Gearbox Manufacturer Price Helical Bevel Right Angle Big Reducer
Product Description
1. High efficiency and save power.
2. Wide speed ranges and high torque.
3. Multi-structure, various assembling methods.
4. High loading support, stable transmitting, and low noise level.
5. Excellent sealing, a wide range of industry applications.
6. It adopts various cooling and lubricating modes.
General Specification
ANG HB Industrial Gear Reducer | |
Type | Helical parallel shaft type, Bevel-helical right-angle type |
Model | H1/B1~H26/B26 |
Input power | 3 ~ 5000 KW; |
Input speed | 750rpm 1000rpm 1500rpm |
Reduction ratio | 1/1.25 ~ 1/450 |
Output torque | 3 ~ 900kN.m |
Install type | Foot / CHINAMFG shaft / Hollow shaft / Output flange… |
Efficiency | Single-stage 98%, 2-stage 96%, 3-stage 94%, 4-stage 92% |
Precision of gear | Accurate grinding, class 6 |
Design position | A / B / C / D / E / F / G / H / I |
Accessories | Backstop / Cooling fan / Cooling coil / Oil pump / Compensation tank … |
Typical Applications
Coal mining
Power Plant Equipment
Metallurgical Industry
Metal Forming Machinery
Petrochemical Industry
Mining Machine
Hoisting Machinery
Cement and Construction Industry
Environmental Protection Industry
Cable Industry
Chemical industry
Food Machinery
Paper Machinery
Typical Models
Horizontal:
Parallel shaft gear unit box
H1SH1, H1SH3, H1SH5, H1SH7, H1SH9, H1SH11, H1SH13, H1SH15, H1SH17, H1SH19
H2SH, H2HH, H2DH, H2KH, H2FH, H3SH, H3HH, H3DH, H3HM, H3DM, H4SH, H4HH, H4DH, H4HM, H4DM
Bevel helical right angle gear unit
B2SH, B2HH, B2DH, B2HM, B2DM, B3SH, B3HH, B3DH, B3HM, B3DM, B4SH, B4HH, B4DH, B4HM, B4DM
Vertical:
Parallel shaft gear unit box
H2SV, H2HV, H2DV, H3SV, H3DV, H4SV, H4HV, H4DV, H4KV, H4FV
Bevel helical right angle gear unit
B2SV, B2HV, B2DV, B3SV, B3HV, B3DV, B4SV, B4HV, B4DV, B4KV, B4FV
Detailed Photos
Related Product
Our Advantages
Company Profile
FAQ
Q: Can you make the gear reducer with customization?
A: Yes, we can customize per your request, like flange, shaft, configuration, material, etc.
Q: Do you provide samples?
A: Yes. A sample is available for testing.
Q: What’s your lead time?
A: Standard products need 5-30 days, a bit longer for customized products.
Q: Do you provide technology support?
A: Yes. Our company has a design and development team, we can provide technology support if you
need.
Q: How to ship to us?
A: It is available by air, by sea, or by train.
Q: How to pay the money?
A: T/T and L/C are preferred, with a different currency, including USD, EUR, RMB, etc.
Q: How can I know if the product is suitable for me?
A: > 1st confirm drawing and specification >2nd test sample >3rd start mass production.
Q: Can I come to your company to visit?
A: Yes, you are welcome to visit us at any time.
Q: How shall we contact you?
A: You can send an inquiry directly, and we will respond within 24 hours.
Shipping Cost:
Estimated freight per unit. |
To be negotiated |
---|
Application: | Motor, Machinery, Marine, Agricultural Machinery, Conveyor Presser Aerator Pump Turbine Extruder |
---|---|
Hardness: | Soft or Hardened Tooth Surface |
Installation: | Horizontal Type |
Samples: |
US$ 1000/Piece
1 Piece(Min.Order) | Order Sample Blue or grey
|
---|
Customization: |
Available
| Customized Request |
---|
Emerging Trends in Industrial Gearbox Technology: Smart Features and More
The field of industrial gearbox technology is constantly evolving, with emerging trends that aim to enhance performance, efficiency, and functionality. One of the notable trends is the integration of smart features into industrial gearboxes:
- IoT Connectivity: Industrial gearboxes are becoming equipped with sensors and connectivity capabilities, enabling them to be part of the Internet of Things (IoT) ecosystem. This connectivity allows for real-time monitoring, data collection, and remote diagnostics, leading to predictive maintenance and improved overall equipment effectiveness.
- Condition Monitoring: Smart gearboxes utilize sensors to monitor various parameters such as temperature, vibration, and lubrication levels. By continuously monitoring these factors, manufacturers can detect potential issues early and take proactive measures to prevent downtime and unplanned maintenance.
- Remote Control and Adjustment: Some modern industrial gearboxes can be remotely controlled and adjusted through digital interfaces. This feature facilitates precise tuning of gearbox settings to optimize performance for specific tasks or changing production demands.
- Advanced Analytics: The data collected from smart gearboxes can be analyzed using advanced analytics tools. This analysis provides insights into gearbox performance, wear patterns, and trends, helping manufacturers make informed decisions about maintenance and process improvements.
- Energy Efficiency: Smart gearboxes may incorporate energy optimization algorithms that adjust power delivery based on real-time demand. This contributes to energy efficiency and cost savings, particularly in applications with variable load requirements.
- Digital Twins: The concept of digital twins, which involves creating virtual models of physical gearboxes, is gaining traction. Digital twins allow engineers to simulate and test different operating conditions and scenarios, aiding in design optimization and performance prediction.
These emerging trends in industrial gearbox technology reflect a shift toward more intelligent, connected, and efficient systems. By embracing smart features and leveraging digital capabilities, manufacturers can unlock new levels of productivity, reliability, and innovation in their operations.
Factors to Consider When Selecting the Right Industrial Gearbox for an Application
Choosing the appropriate industrial gearbox for a specific application requires careful consideration of various factors to ensure optimal performance, reliability, and efficiency. Here are the key factors to consider:
- Load and Torque Requirements: Determine the maximum load and torque the gearbox will need to handle in the application.
- Speed Range: Consider the required speed range for both input and output shafts.
- Operating Conditions: Evaluate the environmental conditions, such as temperature, humidity, and presence of dust or chemicals.
- Space Constraints: Take into account the available installation space and clearance requirements.
- Efficiency: Choose a gearbox with the appropriate efficiency rating to minimize power losses.
- Noise and Vibration: Consider noise and vibration levels, especially in applications where low noise is crucial.
- Service and Maintenance: Assess ease of maintenance, accessibility for repairs, and availability of replacement parts.
- Mounting and Alignment: Ensure compatibility with the existing machinery and proper shaft alignment.
- Cost and Budget: Balance performance requirements with budget constraints.
- Expected Lifespan: Choose a gearbox with a suitable lifespan for the application’s durability needs.
- Gearbox Type: Select the appropriate gearbox type (helical, bevel, worm, etc.) based on the application’s specific requirements.
By carefully considering these factors and consulting with gearbox experts, you can make an informed decision and choose the right industrial gearbox that meets the unique demands of your application.
Contribution of Industrial Gearboxes to Power Transmission
Industrial gearboxes play a vital role in power transmission within mechanical systems by efficiently transmitting torque and speed between input and output shafts. They contribute to power transmission through the following mechanisms:
- Gear Reduction: Industrial gearboxes use gears of different sizes to achieve gear reduction, where the output shaft rotates at a lower speed than the input shaft. This results in an increase in torque, allowing the gearbox to handle heavy loads and challenging tasks.
- Gear Multiplication: In some cases, gearboxes can achieve gear multiplication, where the output shaft rotates at a higher speed than the input shaft. While torque is reduced, this configuration is useful for applications requiring high-speed output.
- Changing Direction: Gearboxes can change the direction of rotation between input and output shafts. This feature is valuable for machinery that requires rotational direction reversal, such as vehicles, cranes, and conveyors.
- Torque Conversion: By adjusting the gear ratios, industrial gearboxes can convert torque from one level to another, enabling efficient power transmission to meet specific operational requirements.
- Speed Control: Industrial gearboxes allow for precise control over the speed of machinery. By selecting appropriate gear ratios, operators can ensure that equipment operates at the desired speed for optimal performance.
- Adapting to Load Conditions: Industrial gearboxes can adapt to varying load conditions by adjusting gear ratios. This adaptability is essential for machinery that experiences changing load demands during operation.
Industrial gearboxes are crucial components in mechanical systems across various industries, enabling efficient and effective power transmission for a wide range of applications.
editor by CX 2023-09-14
China Good quality H Series Parallel Shaft Industrial Reduction Gear Box for Sludger Drives car gearbox
Product Description
Helical Bevel gearbox
H.B series gear units adopt currency layout and may transform into speral reducer according to customer’s requirement.
The housing of 1 size can realize parallel shaft,right-angle shaft models and horizonal,vertical mounting modes.Variety of components is reducible,the number of reducer’s mode is augmentable.
Sound-absorbable structure,large surface,big fan reduce temperature and noise,advanced grinding process of cylindrical gear and bevel gear improve stability and transmit power more efficeintly.
Input mode:motor connected flange,shaft input.
Output mode:solid shaft with flat key,hollow shaft with flat key,hollow shaft with shrink disk,hollow or CZPT shaft with involute splines,solid shaft with flange.
Mounting mode:Foot-mounted,glange-mounted,swing base-mounted,torque-arm-mounted.
H.B series include size 3~26,number of stages is 1~4,ratio is 1.25~450,combing with R series and K series,ratio will be higher.
High precision grade with Gleason and Hofler grinding machineBetter meshing of gearsTop brands bearings and oil sealLong work lifeLow noiseNo oil leakageCompact design, strong and solidBetter cooling propertyCustomized design avaialbeDiversified range catering for power.
RFQ
Q:Are you trading company or manufacturer?
A: We are manufacturer with over 20 years’ experience.
Q: How long is your delivery time?
A: Generally it is within 10 days if the goods are in stock, for goods produced as per order, it is within 35 days after confirmation of order.
Q: How long should I wait for the feedback after I send the enquiry?
A: Normally within 12 hours.
Q: What information should I give you to confirm the product?
A: Model/Size, Transmission Ratio, Speed, Shaft directions & Order quantity etc.
Q: Hong long is your product warranty?
A: We offer 12 months warranty from departure date of the goods.
Q: What is your payment terms? T/T 100% in advance for amount less than USD10000.-, 30% T/T in advance , balance before shipment for amount above USD10000.
If you have any other questions, please feel free to contact us below:
HOW TO CONTACT US?
Send your Inquiry Details in the Below, click “Send” Now!
Application: | Motor, Machinery |
---|---|
Function: | Distribution Power, Change Drive Torque, Change Drive Direction, Speed Changing, Speed Reduction |
Layout: | H, Hb |
Hardness: | Hardened Tooth Surface |
Installation: | Horizontal Type |
Step: | Four-Step |
Customization: |
Available
| Customized Request |
---|
Choosing a Gearbox For Your Application
The gearbox is an essential part of bicycles. It is used for several purposes, including speed and force. A gearbox is used to achieve one or both of these goals, but there is always a trade-off. Increasing speed increases wheel speed and forces on the wheels. Similarly, increasing pedal force increases the force on the wheels. This makes it easier for cyclists to accelerate their bicycles. However, this compromise makes the gearbox less efficient than an ideal one.
Dimensions
Gearboxes come in different sizes, so the size of your unit depends on the number of stages. Using a chart to determine how many stages are required will help you determine the dimensions of your unit. The ratios of individual stages are normally greater at the top and get smaller as you get closer to the last reduction. This information is important when choosing the right gearbox for your application. However, the dimensions of your gearbox do not have to be exact. Some manufacturers have guides that outline the required dimensions.
The service factor of a gearbox is a combination of the required reliability, the actual service condition, and the load that the gearbox will endure. It can range from 1.0 to 1.4. If the service factor of a gearbox is 1.0, it means that the unit has just enough capacity to meet your needs, but any extra requirements could cause the unit to fail or overheat. However, service factors of 1.4 are generally sufficient for most industrial applications, since they indicate that a gearbox can withstand 1.4 times its application requirement.
Different sizes also have different shapes. Some types are concentric, while others are parallel or at a right angle. The fourth type of gearbox is called shaft mount and is used when mounting the gearbox by foot is impossible. We will discuss the different mounting positions later. In the meantime, keep these dimensions in mind when choosing a gearbox for your application. If you have space constraints, a concentric gearbox is usually your best option.
Construction
The design and construction of a gearbox entails the integration of various components into a single structure. The components of a gearbox must have sufficient rigidity and adequate vibration damping properties. The design guidelines note the approximate values for the components and recommend the production method. Empirical formulas were used to determine the dimensions of the various components. It was found that these methods can simplify the design process. These methods are also used to calculate the angular and axial displacements of the components of the gearbox.
In this project, we used a 3D modeling software called SOLIDWORKS to create a 3-D model of a gear reducer. We used this software to simulate the structure of the gearbox, and it has powerful design automation tools. Although the gear reducer and housing are separate parts, we model them as a single body. To save time, we also removed the auxiliary elements, such as oil inlets and oil level indicators, from the 3D model.
Our method is based on parameter-optimized deep neural networks (DBNs). This model has both supervised and unsupervised learning capabilities, allowing it to be self-adaptive. This method is superior to traditional methods, which have poor self-adaptive feature extraction and shallow network generalization. Our algorithm is able to recognize faults in different states of the gearbox using its vibration signal. We have tested our model on two gearboxes.
With the help of advanced material science technologies, we can now manufacture the housing for the gearbox using high-quality steel and aluminium alloys. In addition, advanced telematics systems have increased the response time of manufacturers. These technologies are expected to create tremendous opportunities in the coming years and fuel the growth of the gearbox housing market. There are many different ways to construct a gearbox, and these techniques are highly customizable. In this study, we will consider the design and construction of various gearbox types, as well as their components.
Working
A gearbox is a mechanical device that transmits power from one gear to another. The different types of gears are called planetary gears and are used in a variety of applications. Depending on the type of gearbox, it may be concentric, parallel, or at a right angle. The fourth type of gearbox is a shaft mount. The shaft mount type is used in applications that cannot be mounted by foot. The various mounting positions will be discussed later.
Many design guidelines recommend a service factor of 1.0, which needs to be adjusted based on actual service conditions. This factor is the combined measure of external load, required reliability, and overall gearbox life. In general, published service factors are the minimum requirements for a particular application, but a higher value is necessary for severe loading. This calculation is also recommended for high-speed gearboxes. However, the service factor should not be a sole determining factor in the selection process.
The second gear of a pair of gears has more teeth than the first gear. It also turns slower, but with greater torque. The second gear always turns in the opposite direction. The animation demonstrates this change in direction. A gearbox can also have more than one pair of gears, and a first gear may be used for the reverse. When a gear is shifted from one position to another, the second gear is engaged and the first gear is engaged again.
Another term used to describe a gearbox is “gear box.” This term is an interchangeable term for different mechanical units containing gears. Gearboxes are commonly used to alter speed and torque in various applications. Hence, understanding the gearbox and its parts is essential to maintaining your car’s performance. If you want to extend the life of your vehicle, be sure to check the gearbox’s efficiency. The better its functioning, the less likely it is to fail.
Advantages
Automatic transmission boxes are almost identical to mechanical transmission boxes, but they also have an electronic component that determines the comfort of the driver. Automatic transmission boxes use special blocks to manage shifts effectively and take into account information from other systems, as well as the driver’s input. This ensures accuracy and positioning. The following are a few gearbox advantages:
A gearbox creates a small amount of drag when pedaling, but this drag is offset by the increased effort to climb. The external derailleur system is more efficient when adjusted for friction, but it does not create as little drag in dry conditions. The internal gearbox allows engineers to tune the shifting system to minimize braking issues, pedal kickback, and chain growth. As a result, an internal gearbox is a great choice for bikes with high-performance components.
Helical gearboxes offer some advantages, including a low noise level and lower vibration. They are also highly durable and reliable. They can be extended in modular fashion, which makes them more expensive. Gearboxes are best for applications involving heavy loads. Alternatively, you can opt for a gearbox with multiple teeth. A helical gearbox is more durable and robust, but it is also more expensive. However, the benefits far outweigh the disadvantages.
A gearbox with a manual transmission is often more energy-efficient than one with an automatic transmission. Moreover, these cars typically have lower fuel consumption and higher emissions than their automatic counterparts. In addition, the driver does not have to worry about the brakes wearing out quickly. Another advantage of a manual transmission is its affordability. A manual transmission is often available at a lower cost than its automatic counterpart, and repairs and interventions are easier and less costly. And if you have a mechanical problem with the gearbox, you can control the fuel consumption of your vehicle with appropriate driving habits.
Application
While choosing a gearbox for a specific application, the customer should consider the load on the output shaft. High impact loads will wear out gear teeth and shaft bearings, requiring higher service factors. Other factors to consider are the size and style of the output shaft and the environment. Detailed information on these factors will help the customer choose the best gearbox. Several sizing programs are available to determine the most appropriate gearbox for a specific application.
The sizing of a gearbox depends on its input speed, torque, and the motor shaft diameter. The input speed must not exceed the required gearbox’s rating, as high speeds can cause premature seal wear. A low-backlash gearbox may be sufficient for a particular application. Using an output mechanism of the correct size may help increase the input speed. However, this is not recommended for all applications. To choose the right gearbox, check the manufacturer’s warranty and contact customer service representatives.
Different gearboxes have different strengths and weaknesses. A standard gearbox should be durable and flexible, but it must also be able to transfer torque efficiently. There are various types of gears, including open gearing, helical gears, and spur gears. Some of the types of gears can be used to power large industrial machines. For example, the most popular type of gearbox is the planetary drive gearbox. These are used in material handling equipment, conveyor systems, power plants, plastics, and mining. Gearboxes can be used for high-speed applications, such as conveyors, crushers, and moving monorail systems.
Service factors determine the life of a gearbox. Often, manufacturers recommend a service factor of 1.0. However, the actual value may be higher or lower than that. It is often useful to consider the service factor when choosing a gearbox for a particular application. A service factor of 1.4 means that the gearbox can handle 1.4 times the load required. For example, a 1,000-inch-pound gearbox would need a 1,400-inch-pound gearbox. Service factors can be adjusted to suit different applications and conditions.
editor by CX 2023-06-08
China manufacturer CZPT Shaft Mixer Mining Machine Drive Unit Coaxial Gear Reduction Gearing Electric Motor Coaxial Planetary Gearbox for Concrete Mixer wholesaler
Product Description
Solid Shaft Mixer Mining Machine Drive Unit Coaxial Gear Reduction Gearing Electric Motor Coaxial Planetary Gearbox for Concrete Mixer
P series planetary gearbox with good prices
1.P Series Planetary Gear Units is designed according to the involute planetary gear transmission with inner mesh,outer mesh and divided power employed reasonably.
2.P series planetary gear unit has the feature of light weight , small volume, high transmission ratio,
high efficiency, smooth rotation, low noise and good applicability.
3.P series is widely used in industries such as metallurgy, mining, hoisting and transportation, electrical power, energy resources, construction and building materials, light industry and traffic.
Application: | Motor, Electric Cars, Motorcycle, Machinery, Marine, Toy, Agricultural Machinery, Car |
---|---|
Hardness: | Soft Tooth Surface |
Installation: | 90 Degree |
Layout: | Helical Gearbox |
Gear Shape: | Conical – Cylindrical Gear |
Step: | Stepless |
Samples: |
US$ 9999/Piece
1 Piece(Min.Order) | |
---|
Choosing a Gearbox For Your Application
The gearbox is an essential part of bicycles. It is used for several purposes, including speed and force. A gearbox is used to achieve one or both of these goals, but there is always a trade-off. Increasing speed increases wheel speed and forces on the wheels. Similarly, increasing pedal force increases the force on the wheels. This makes it easier for cyclists to accelerate their bicycles. However, this compromise makes the gearbox less efficient than an ideal one.
Dimensions
Gearboxes come in different sizes, so the size of your unit depends on the number of stages. Using a chart to determine how many stages are required will help you determine the dimensions of your unit. The ratios of individual stages are normally greater at the top and get smaller as you get closer to the last reduction. This information is important when choosing the right gearbox for your application. However, the dimensions of your gearbox do not have to be exact. Some manufacturers have guides that outline the required dimensions.
The service factor of a gearbox is a combination of the required reliability, the actual service condition, and the load that the gearbox will endure. It can range from 1.0 to 1.4. If the service factor of a gearbox is 1.0, it means that the unit has just enough capacity to meet your needs, but any extra requirements could cause the unit to fail or overheat. However, service factors of 1.4 are generally sufficient for most industrial applications, since they indicate that a gearbox can withstand 1.4 times its application requirement.
Different sizes also have different shapes. Some types are concentric, while others are parallel or at a right angle. The fourth type of gearbox is called shaft mount and is used when mounting the gearbox by foot is impossible. We will discuss the different mounting positions later. In the meantime, keep these dimensions in mind when choosing a gearbox for your application. If you have space constraints, a concentric gearbox is usually your best option.
Construction
The design and construction of a gearbox entails the integration of various components into a single structure. The components of a gearbox must have sufficient rigidity and adequate vibration damping properties. The design guidelines note the approximate values for the components and recommend the production method. Empirical formulas were used to determine the dimensions of the various components. It was found that these methods can simplify the design process. These methods are also used to calculate the angular and axial displacements of the components of the gearbox.
In this project, we used a 3D modeling software called SOLIDWORKS to create a 3-D model of a gear reducer. We used this software to simulate the structure of the gearbox, and it has powerful design automation tools. Although the gear reducer and housing are separate parts, we model them as a single body. To save time, we also removed the auxiliary elements, such as oil inlets and oil level indicators, from the 3D model.
Our method is based on parameter-optimized deep neural networks (DBNs). This model has both supervised and unsupervised learning capabilities, allowing it to be self-adaptive. This method is superior to traditional methods, which have poor self-adaptive feature extraction and shallow network generalization. Our algorithm is able to recognize faults in different states of the gearbox using its vibration signal. We have tested our model on two gearboxes.
With the help of advanced material science technologies, we can now manufacture the housing for the gearbox using high-quality steel and aluminium alloys. In addition, advanced telematics systems have increased the response time of manufacturers. These technologies are expected to create tremendous opportunities in the coming years and fuel the growth of the gearbox housing market. There are many different ways to construct a gearbox, and these techniques are highly customizable. In this study, we will consider the design and construction of various gearbox types, as well as their components.
Working
A gearbox is a mechanical device that transmits power from one gear to another. The different types of gears are called planetary gears and are used in a variety of applications. Depending on the type of gearbox, it may be concentric, parallel, or at a right angle. The fourth type of gearbox is a shaft mount. The shaft mount type is used in applications that cannot be mounted by foot. The various mounting positions will be discussed later.
Many design guidelines recommend a service factor of 1.0, which needs to be adjusted based on actual service conditions. This factor is the combined measure of external load, required reliability, and overall gearbox life. In general, published service factors are the minimum requirements for a particular application, but a higher value is necessary for severe loading. This calculation is also recommended for high-speed gearboxes. However, the service factor should not be a sole determining factor in the selection process.
The second gear of a pair of gears has more teeth than the first gear. It also turns slower, but with greater torque. The second gear always turns in the opposite direction. The animation demonstrates this change in direction. A gearbox can also have more than one pair of gears, and a first gear may be used for the reverse. When a gear is shifted from one position to another, the second gear is engaged and the first gear is engaged again.
Another term used to describe a gearbox is “gear box.” This term is an interchangeable term for different mechanical units containing gears. Gearboxes are commonly used to alter speed and torque in various applications. Hence, understanding the gearbox and its parts is essential to maintaining your car’s performance. If you want to extend the life of your vehicle, be sure to check the gearbox’s efficiency. The better its functioning, the less likely it is to fail.
Advantages
Automatic transmission boxes are almost identical to mechanical transmission boxes, but they also have an electronic component that determines the comfort of the driver. Automatic transmission boxes use special blocks to manage shifts effectively and take into account information from other systems, as well as the driver’s input. This ensures accuracy and positioning. The following are a few gearbox advantages:
A gearbox creates a small amount of drag when pedaling, but this drag is offset by the increased effort to climb. The external derailleur system is more efficient when adjusted for friction, but it does not create as little drag in dry conditions. The internal gearbox allows engineers to tune the shifting system to minimize braking issues, pedal kickback, and chain growth. As a result, an internal gearbox is a great choice for bikes with high-performance components.
Helical gearboxes offer some advantages, including a low noise level and lower vibration. They are also highly durable and reliable. They can be extended in modular fashion, which makes them more expensive. Gearboxes are best for applications involving heavy loads. Alternatively, you can opt for a gearbox with multiple teeth. A helical gearbox is more durable and robust, but it is also more expensive. However, the benefits far outweigh the disadvantages.
A gearbox with a manual transmission is often more energy-efficient than one with an automatic transmission. Moreover, these cars typically have lower fuel consumption and higher emissions than their automatic counterparts. In addition, the driver does not have to worry about the brakes wearing out quickly. Another advantage of a manual transmission is its affordability. A manual transmission is often available at a lower cost than its automatic counterpart, and repairs and interventions are easier and less costly. And if you have a mechanical problem with the gearbox, you can control the fuel consumption of your vehicle with appropriate driving habits.
Application
While choosing a gearbox for a specific application, the customer should consider the load on the output shaft. High impact loads will wear out gear teeth and shaft bearings, requiring higher service factors. Other factors to consider are the size and style of the output shaft and the environment. Detailed information on these factors will help the customer choose the best gearbox. Several sizing programs are available to determine the most appropriate gearbox for a specific application.
The sizing of a gearbox depends on its input speed, torque, and the motor shaft diameter. The input speed must not exceed the required gearbox’s rating, as high speeds can cause premature seal wear. A low-backlash gearbox may be sufficient for a particular application. Using an output mechanism of the correct size may help increase the input speed. However, this is not recommended for all applications. To choose the right gearbox, check the manufacturer’s warranty and contact customer service representatives.
Different gearboxes have different strengths and weaknesses. A standard gearbox should be durable and flexible, but it must also be able to transfer torque efficiently. There are various types of gears, including open gearing, helical gears, and spur gears. Some of the types of gears can be used to power large industrial machines. For example, the most popular type of gearbox is the planetary drive gearbox. These are used in material handling equipment, conveyor systems, power plants, plastics, and mining. Gearboxes can be used for high-speed applications, such as conveyors, crushers, and moving monorail systems.
Service factors determine the life of a gearbox. Often, manufacturers recommend a service factor of 1.0. However, the actual value may be higher or lower than that. It is often useful to consider the service factor when choosing a gearbox for a particular application. A service factor of 1.4 means that the gearbox can handle 1.4 times the load required. For example, a 1,000-inch-pound gearbox would need a 1,400-inch-pound gearbox. Service factors can be adjusted to suit different applications and conditions.
editor by CX 2023-06-05
China Good quality Angle Gearbox 90degree Hollow Shaft High-Quality Efficiency Industries Manufacturers Gear Drives Compact Reducer Low Backlash Helical Spiral Bevel Angle Gearbox bevel gearbox
Product Description
Angle Gearbox 90Degree Hollow Shaft High-Quality Efficiency Industries Manufacturers Gear Drives Compact Reducer Low Backlash Helical Spiral Bevel Angle Gearbox
High-Quality Right Angle Gear Drives are designed for efficiency, quiet operation, and long service life. CZPT offers a broad selection of Right Angle Gear Drives in various configurations, materials, operating speeds, and multiple ratios. Standard catalog items include precision and commercial quality gear drives offered in both inch and metric sizes. For modifications or custom designs call and speak to a CZPT applications engineer.
Our offering includes, but is not limited to the following:
Miniature sized Right Angle Gear Drives, 1 inch square, are perfect for compact designs that require low backlash and input speeds up to 2000 rpm.
When weight is an issue, get Right Angle Bevel Gear Drives that feature a lightweight housing of PTMT Polyester 30% glass filled, precision ground stainless steel shafts, sintered bronze bearings and molded nylon gears.
Right Angle Worm Gear Drives accommodate input speeds up to 2000 rpm and are available in gear ratios: 5:1, 10:1 and 20:1.
Right Angle and Dual Helical Gear Drives are offered in 2 models, light-duty, rated speeds up to 600 rpm and heavy duty, rated speeds up to 1725 rpm.
Application: | Motor, Electric Cars, Motorcycle, Machinery, Marine, Agricultural Machinery, Car |
---|---|
Function: | Distribution Power, Clutch, Change Drive Torque, Change Drive Direction, Speed Changing, Speed Reduction, Speed Increase |
Layout: | Coaxial |
Hardness: | Hardened Tooth Surface |
Installation: | Horizontal Type |
Step: | Three-Step |
Samples: |
US$ 9999/Piece
1 Piece(Min.Order) | |
---|
What Is a Gearbox?
There are several factors to consider when choosing a gearbox. Backlash, for example, is a consideration, as it is the angle at which the output shaft can rotate without the input shaft moving. While this isn’t necessary in applications without load reversals, it is important for precision applications involving load reversals. Examples of these applications include automation and robotics. If backlash is a concern, you may want to look at other factors, such as the number of teeth in each gear.
Function of a gearbox
A gearbox is a mechanical unit that consists of a chain or set of gears. The gears are mounted on a shaft and are supported by rolling element bearings. These devices alter the speed or torque of the machine they are used in. Gearboxes can be used for a wide variety of applications. Here are some examples of how gearboxes function. Read on to discover more about the gears that make up a gearbox.
Regardless of the type of transmission, most gearboxes are equipped with a secondary gear and a primary one. While the gear ratios are the same for both the primary and secondary transmission, the gearboxes may differ in size and efficiency. High-performance racing cars typically employ a gearbox with two green and one blue gear. Gearboxes are often mounted in the front or rear of the engine.
The primary function of a gearbox is to transfer torque from one shaft to another. The ratio of the driving gear’s teeth to the receiving member determines how much torque is transmitted. A large gear ratio will cause the main shaft to revolve at a slower speed and have a high torque compared to its counter shaft. Conversely, a low gear ratio will allow the vehicle to turn at a lower speed and produce a lower torque.
A conventional gearbox has input and output gears. The countershaft is connected to a universal shaft. The input and output gears are arranged to match the speed and torque of each other. The gear ratio determines how fast a car can go and how much torque it can generate. Most conventional transmissions use four gear ratios, with one reverse gear. Some have two shafts and three inputs. However, if the gear ratios are high, the engine will experience a loss of torque.
In the study of gearbox performance, a large amount of data has been collected. A highly ambitious segmentation process has yielded nearly 20,000 feature vectors. These results are the most detailed and comprehensive of all the available data. This research has a dual curse – the first is the large volume of data collected for the purpose of characterization, while the second is the high dimensionality. The latter is a complication that arises when the experimental gearbox is not designed to perform well.
Bzvacklash
The main function of a gearhead is to multiply a moment of force and create a mechanical advantage. However, backlash can cause a variety of issues for the system, including impaired positioning accuracy and lowered overall performance. A zero backlash gearbox can eliminate motion losses caused by backlash and improve overall system performance. Here are some common problems associated with backlash in gearheads and how to fix them. After you understand how to fix gearbox backlash, you’ll be able to design a machine that meets your requirements.
To reduce gearbox backlash, many designers try to decrease the center distance of the gears. This eliminates space for lubrication and promotes excessive tooth mesh, which leads to premature mesh failure. To minimize gearbox backlash, a gear manufacturer may separate the two parts of the gear and adjust the mesh center distance between them. To do this, rotate one gear with respect to the fixed gear, while adjusting the other gear’s effective tooth thickness.
Several manufacturing processes may introduce errors, and reducing tooth thickness will minimize this error. Gears with bevel teeth are a prime example of this. This type of gear features a small number of teeth in comparison to its mating gear. In addition to reducing tooth thickness, bevel gears also reduce backlash. While bevel gears have fewer teeth than their mating gear, all of their backlash allowance is applied to the larger gear.
A gear’s backlash can affect the efficiency of a gearbox. In an ideal gear, the backlash is zero. But if there is too much, backlash can cause damage to the gears and cause it to malfunction. Therefore, the goal of gearbox backlash is to minimize this problem. However, this may require the use of a micrometer. To determine how much gearbox backlash you need, you can use a dial gauge or feeler gauge.
If you’ve been looking for a way to reduce backlash, a gearbox’s backlash may be the answer. However, backlash is not a revolt against the manufacturer. It is an error in motion that occurs naturally in gear systems that change direction. If it is left unaccounted for, it can lead to major gear degradation and even compromise the entire system. In this article, we’ll explain how backlash affects gears and how it affects the performance of a gearbox.
Design
The design of gearboxes consists of a variety of factors, including the type of material used, power requirements, speed and reduction ratio, and the application for which the unit is intended. The process of designing a gearbox usually begins with a description of the machine or gearbox and its intended use. Other key parameters to consider during gearbox design include the size and weight of the gear, its overall gear ratio and number of reductions, as well as the lubrication methods used.
During the design process, the customer and supplier will participate in various design reviews. These include concept or initial design review, manufacturing design validation, critical design review, and final design review. The customer may also initiate the process by initiating a DFMEA. After receiving the initial design approval, the design will go through several iterations before the finalized design is frozen. In some cases, the customer will require a DFMEA of the gearbox.
The speed increaser gearboxes also require special design considerations. These gearboxes typically operate at high speeds, causing problems with gear dynamics. Furthermore, the high speeds of the unit increase frictional and drag forces. A proper design of this component should minimize the effect of these forces. To solve these problems, a gearbox should incorporate a brake system. In some cases, an external force may also increase frictional forces.
Various types of gear arrangements are used in gearboxes. The design of the teeth of the gears plays a significant role in defining the type of gear arrangement in the gearbox. Spur gear is an example of a gear arrangement, which has teeth that run parallel to the axis of rotation. These gears offer high gear ratios and are often used in multiple stages. So, it is possible to create a gearbox that meets the needs of your application.
The design of gearboxes is the most complex process in the engineering process. These complex devices are made of multiple types of gears and are mounted on shafts. They are supported by rolling element bearings and are used for a variety of applications. In general, a gearbox is used to reduce speed and torque and change direction. Gearboxes are commonly used in motor vehicles, but can also be found in pedal bicycles and fixed machines.
Manufacturers
There are several major segments in the gearbox market, including industrial, mining, and automotive. Gearbox manufacturers are required to understand the application and user industries to design a gearbox that meets their specific requirements. Basic knowledge of metallurgy is necessary. Multinational companies also provide gearbox solutions for the power generation industry, shipping industry, and automotive industries. To make their products more competitive, they need to focus on product innovation, geographical expansion, and customer retention.
The CZPT Group started as a small company in 1976. Since then, it has become a global reference in mechanical transmissions. Its production range includes gears, reduction gearboxes, and geared motors. The company was the first in Italy to achieve ISO certification, and it continues to grow into one of the world’s leading manufacturers of production gearboxes. As the industry evolves, CZPT focuses on research and development to create better products.
The agriculture industry uses gearboxes to implement a variety of processes. They are used in tractors, pumps, and agricultural machinery. The automotive industry uses gears in automobiles, but they are also found in mining and tea processing machinery. Industrial gearboxes also play an important role in feed and speed drives. The gearbox industry has a diverse portfolio of manufacturers and suppliers. Here are some examples of gearboxes:
Gearboxes are complex pieces of equipment. They must be used properly to optimize efficiency and extend their lifespan. Manufacturers employ advanced technology and strict quality control processes to ensure their products meet the highest standards. In addition to manufacturing precision and reliability, gearbox manufacturers ensure that their products are safe for use in the production of industrial machinery. They are also used in office machines and medical equipment. However, the automotive gearbox market is becoming increasingly competitive.
editor by CX 2023-05-25