China best Customized Cast Iron Transmission Gear/V-Belt/Groove/Conveyor Pulley wholesaler

Product Description

                            Customized Cast Iron Transmission Gear/V-Belt/Groove/Conveyor Pulley
 

Product Description

 

 V belt pulley specification: 

      

1) European standards :    

a) V-belt pulley for taper bushing: SPZ, SPA, SPB, SPC; up to 10 grooves   

b) Adjustable speed V-belt pulleys and variable speed pulley  

c) Flat belt pulleys and conveyor belt pulleys   

      

2) American standards:   

a) Sheaves for taper bushing: 3V, 5V, 8V    

b) Sheaves for QD bushings: 3V, 5V, 8V   

c) Sheaves for split taper bushing: 3V, 5V, 8V   

d) Sheaves for 3L, 4L or A, and 5L or B belts: AK, AKH, 2AK, 2AKH, BK, BKH,2BK, 2BKH, 3BK   

e) Adjustable sheave: poly V-pulley, multi-pitch H, L, J, K and M  

      

3) Bore: pilot bore, finish bore, taper bore, bore for QD bushing  

1. Material:
Cast ductile iron: QT400-18, QT450-12, QT500-7, QT600-3, QT700-2
Grey iron: HT150, HT200, HT250, HT300
Other Materials: Steel, Stainless Steel, Bronze, Brass and Aluminum;
2. Process:
Sand casting, Investment casting, permanent mould casting and die casting;
3. Application:
Mining machinery, Crane;
4. OEM design/service:
Our company can supply various pulleys (OEM) according to the customers’ drawings and requirements. Please offer us your enquiry
with detailed drawings, specifications, unit weight, quality requirements and pictures. We will supply you not only the products
with good quality but also competitive price.
5.Machining Shop
With our powerful precision CNC machining equipments such as lathes, milling machines and drilling press, we can easily operate Turning, Drilling and Milling. Furthermore, we are able to run other operations like cutting, grinding, bending, shaping, plHangZhou and sawing.
 

Use:

Mainly used in the mining, metallurgical, cement, chemicals,construction, buiding materials,

electric power, telecommunictions, textiles, and transportation departments.

Such as:

1. conveyor:Belt conveyor,AFC conveyor, chain conveyor, screw conveyor.

2. Pum:Water pump, oil pump, slush pump, etc.

3. Fan: Draft fan, fanner, boil fan, etc.

4. Excator:bucket excavator bucket, wheel excavators .

5. Crane:Tower crane, gantry crande, bridge crane.

6. Others:Various elevators, coal plough, ball mill, crusher, recreation machine.

7. Blender equipment, centrifuger, washer, leather-making machine, machine for recreation park mixer wire drawing machine.Extruder, dregs crusher of boiler.

8. Plastic feeder, rubber smelling machine, etc.

 

 

General Products Application/Service Area

Metal Parts Solution for Vehicle, Agriculture machine, Construction Machine, transportation equipment, Valve and Pump system. E.g.
Engine bracket, truck chassis bracket, gear box , gear housing , gear cover, shaft, spline shaft , pulley, flange, connection
pipe, pipe, hydraulic valve , valve housing ,Fitting , flange, wheel, flywheel, oil pump housing, starter housing, coolant pump
housing, transmission shaft , transmission gear, sprocket, chains etc.

Applicable Material

iron or stainless steel or aluminum etc., or as customer request.

Casting Blank Weight

Range from 0.01kg-1000kg

Applicable Machining Process

CNC Machining/ Lathing/ Milling/ Turning/ Boring/ Drilling/ Tapping/ Broaching/ Reaming /Grinding/Honing and etc.

Machining Tolerance

From 0.005mm-0.01mm-0.1mm

Machined Surface Quality

Ra 0.8-Ra3.2, according to customer requirement

Applicable Heat Treatment

Normalization , annealing, quenching and tempering, Case Hardening, Nitriding, Carbon Nitriding, Induction Quenching.

Applicable Finish Surface Treatment

Shot/sand blast, polishing, Surface passivation, Primer Painting , Powder coating, ED- Coating, Chromate Plating, zinc-plate,
Dacromat coating, Finish Painting etc.

MOQ per batch

For Pulley: 1pc available for sample test

Lead Time

about 50 days of Pulley

 

 

FAQ

 

       1. Q: Why choose CHINAMFG product?
       A: We CHINAMFG have our own plant– HangZhou CHINAMFG machinery Co.,Ltd, therefore,
       we can surely promise the quality of every product and provide you comparable price.
 
       2. Q: Do you provide OEM Service?
       A: Yes, we provide OEM Service.
 
       3.  Q: Do you provide customized investment casting parts?
       A: Yes. Customers give us drawings and specifications, and we will manufacture
       accordingly.
 
      4. Q: What is your payment term?
      A: We provide kinds of payment terms such as L/C, T/T, Paypal, Escrow, etc..

 

Packaging & Shipping

 

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Certification: CE, ISO, ISO9001:2015
Pulley Sizes: Type D
Manufacturing Process: Casting
Samples:
US$ 15/Piece
1 Piece(Min.Order)

|

Order Sample

Samples produced according to your requirement
Customization:
Available

|

Customized Request

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Shipping Cost:

Estimated freight per unit.







about shipping cost and estimated delivery time.
Payment Method:







 

Initial Payment



Full Payment
Currency: US$
Return&refunds: You can apply for a refund up to 30 days after receipt of the products.

gear pulley

What is the significance of proper alignment in gear pulley systems?

Proper alignment in gear pulley systems is of significant importance for ensuring optimal performance, efficiency, and longevity of the system. Here’s a detailed explanation of the significance of proper alignment in gear pulley systems:

1. Efficient Power Transmission:

Proper alignment ensures that the gears and pulleys engage correctly, resulting in efficient power transmission. Misalignment can cause excessive friction, energy loss, and premature wear of components. When the gears and pulleys are properly aligned, the force is evenly distributed across the teeth and surfaces, minimizing energy losses and maximizing the transfer of rotational power from the driving gear to the driven gear or pulley.

2. Smooth Operation:

Alignment plays a crucial role in achieving smooth and vibration-free operation of gear pulley systems. Misalignment can lead to uneven forces and vibrations, causing noise, increased wear, and reduced system stability. Proper alignment ensures that the gears and pulleys rotate without excessive axial or radial movement, resulting in smooth and reliable operation.

3. Extended Component Life:

Proper alignment helps prolong the life of gears, pulleys, bearings, and other components in the system. Misalignment can create excessive stresses on the teeth, shafts, and bearings, leading to premature wear, pitting, or failure. By ensuring proper alignment, the load is evenly distributed, reducing stress concentrations and promoting longer component life.

4. Accurate Speed and Torque Transmission:

In gear pulley systems, accurate speed and torque transmission are crucial for achieving the desired performance. Misalignment can cause deviations in rotational speed and torque, leading to inaccurate operation and reduced system performance. Proper alignment ensures that the gears and pulleys maintain the intended contact and engagement, resulting in accurate speed and torque transmission.

5. Reduced Energy Consumption:

Misalignment in gear pulley systems can result in increased energy consumption. The inefficiencies caused by misalignment, such as friction and energy losses, require the system to consume more power to achieve the desired output. Proper alignment minimizes these inefficiencies, reducing energy consumption and improving overall system efficiency.

6. Preventive Maintenance:

Proper alignment is essential for preventive maintenance practices. Regular inspection and adjustment of alignment help identify and correct any misalignment issues before they lead to significant damage or system failure. By proactively maintaining proper alignment, potential problems can be addressed early, reducing downtime and repair costs.

7. Safety:

Proper alignment contributes to the safety of gear pulley systems. Misalignment can create unexpected forces, vibrations, or sudden movements, posing safety risks to operators and surrounding equipment. Properly aligned systems operate predictably and reliably, minimizing the risk of accidents or damage.

In summary, proper alignment in gear pulley systems is crucial for efficient power transmission, smooth operation, extended component life, accurate speed and torque transmission, reduced energy consumption, preventive maintenance, and safety. Regular inspection and adjustment of alignment are necessary to ensure optimal performance and reliability of gear pulley systems.

gear pulley

What safety considerations should be kept in mind when using gear pulleys?

When using gear pulleys, several safety considerations should be kept in mind to prevent accidents, ensure operator safety, and maintain equipment integrity. Here’s a detailed explanation of the safety considerations associated with gear pulley usage:

1. Guarding:

It is essential to have appropriate guarding in place to prevent accidental contact with rotating gear pulleys. Guards should be designed and installed to restrict access to the moving parts of the gear pulley system, minimizing the risk of entanglement, pinching, or crushing injuries. Guards should be securely attached and provide sufficient visibility for monitoring the operation while ensuring operator safety.

2. Lockout-Tagout (LOTO):

Proper lockout-tagout procedures should be followed when performing maintenance, repairs, or adjustments on gear pulley systems. LOTO procedures involve isolating the power source, locking the energy-isolating device, and tagging it to indicate that maintenance work is in progress. This precaution prevents unintended startup of the machinery, protecting personnel from potential hazards associated with gear pulley movement.

3. Training and Education:

Operators and maintenance personnel should receive comprehensive training on the safe operation, maintenance, and inspection of gear pulleys. They should be educated about the potential hazards, safety procedures, and proper use of personal protective equipment (PPE). Training should cover topics such as safe work practices, emergency procedures, hazard identification, and reporting of any malfunctions or abnormalities.

4. PPE (Personal Protective Equipment):

Appropriate personal protective equipment should be worn when working with or around gear pulleys. This may include safety glasses or goggles, protective gloves, hearing protection, and, depending on the application, protective clothing such as helmets or safety shoes. PPE helps mitigate the risk of injuries from flying debris, noise exposure, or contact with rotating parts.

5. Regular Inspection and Maintenance:

Gear pulleys should undergo regular inspection and maintenance to ensure proper functioning and identify any potential safety hazards. This includes checking for worn or damaged gears, loose fasteners, misalignment, excessive vibration, or signs of lubrication issues. Any abnormalities should be promptly addressed to prevent equipment failure or accidents during operation.

6. Load Capacities and Ratings:

It is crucial to adhere to the load capacities and ratings specified by the gear pulley manufacturer. Overloading the gear pulley system can lead to excessive stress, premature failure, or catastrophic accidents. Operators should be aware of the system’s maximum load capacity and ensure that it is not exceeded during operation.

7. Proper Installation and Alignment:

Gear pulleys should be installed and aligned correctly to prevent excessive wear, noise, or premature failure. Proper alignment ensures smooth operation and minimizes the risk of unexpected movements or disengagement. It is essential to follow the manufacturer’s guidelines for installation, alignment, and adjustment of gear pulleys to maintain safe and reliable operation.

8. Hazardous Environments:

In certain industrial environments, gear pulleys may be exposed to hazardous substances, extreme temperatures, or corrosive materials. It is important to consider the specific hazards of the working environment and select gear pulleys that are suitable for those conditions. Additional safety measures, such as protective coatings, ventilation systems, or specialized gear materials, may be required to ensure safe operation in such environments.

9. Proper Handling and Lifting:

When handling gear pulleys, proper lifting techniques should be employed to avoid strain or injuries. If gear pulleys are large or heavy, appropriate lifting equipment or machinery should be used. Operators should be trained in safe lifting practices and ensure that they have a clear path and adequate space when moving or positioning gear pulleys.

10. Emergency Stop and Warning Systems:

Gear pulley systems should be equipped with emergency stop mechanisms and clearly visible warning signs or labels. Emergency stops allow operators to quickly halt the machinery in case of an emergency or imminent danger. Warning signs or labels should provide clear instructions, cautions, and safety information to alert personnel about potential hazards associated with gear pulley operation.

In summary, the safety considerations when using gear pulleys include proper guarding, adherence to lockout-tagout procedures, adequate training and education, use of personal protective equipment, regular inspection and maintenance, adherence to load capacities and ratings, proper installation and alignment, awareness of hazardous environments, safe handling and lifting practices, and the presence of emergency stop and warning systems. By implementing these safety measures, the risk of accidents and injuries associated

What safety considerations should be kept in mind when using gear pulleys?

When using gear pulleys, several safety considerations should be kept in mind to prevent accidents, ensure operator safety, and maintain equipment integrity. Here’s a detailed explanation of the safety considerations associated with gear pulley usage:

  1. Guarding: It is essential to have appropriate guarding in place to prevent accidental contact with rotating gear pulleys. Guards should be designed and installed to restrict access to the moving parts of the gear pulley system, minimizing the risk of entanglement, pinching, or crushing injuries. Guards should be securely attached and provide sufficient visibility for monitoring the operation while ensuring operator safety.
  2. Lockout-Tagout (LOTO): Proper lockout-tagout procedures should be followed when performing maintenance, repairs, or adjustments on gear pulley systems. LOTO procedures involve isolating the power source, locking the energy-isolating device, and tagging it to indicate that maintenance work is in progress. This precaution prevents unintended startup of the machinery, protecting personnel from potential hazards associated with gear pulley movement.
  3. Training and Education: Operators and maintenance personnel should receive comprehensive training on the safe operation, maintenance, and inspection of gear pulleys. They should be educated about the potential hazards, safety procedures, and proper use of personal protective equipment (PPE). Training should cover topics such as safe work practices, emergency procedures, hazard identification, and reporting of any malfunctions or abnormalities.
  4. PPE (Personal Protective Equipment): Appropriate personal protective equipment should be worn when working with or around gear pulleys. This may include safety glasses or goggles, protective gloves, hearing protection, and, depending on the application, protective clothing such as helmets or safety shoes. PPE helps mitigate the risk of injuries from flying debris, noise exposure, or contact with rotating parts.
  5. Regular Inspection and Maintenance: Gear pulleys should undergo regular inspection and maintenance to ensure proper functioning and identify any potential safety hazards. This includes checking for worn or damaged gears, loose fasteners, misalignment, excessive vibration, or signs of lubrication issues. Any abnormalities should be promptly addressed to prevent equipment failure or accidents during operation.
  6. Load Capacities and Ratings: It is crucial to adhere to the load capacities and ratings specified by the gear pulley manufacturer. Overloading the gear pulley system can lead to excessive stress, premature failure, or catastrophic accidents. Operators should be aware of the system’s maximum load capacity and ensure that it is not exceeded during operation.
  7. Proper Installation and Alignment: Gear pulleys should be installed and aligned correctly to prevent excessive wear, noise, or premature failure. Proper alignment ensures smooth operation and minimizes the risk of unexpected movements or disengagement. It is essential to follow the manufacturer’s guidelines for installation, alignment, and adjustment of gear pulleys to maintain safe and reliable operation.
  8. Hazardous Environments: In certain industrial environments, gear pulleys may be exposed to hazardous substances, extreme temperatures, or corrosive materials. It is important to consider the specific hazards of the working environment and select gear pulleys that are suitable for those conditions. Additional safety measures, such as protective coatings, ventilation systems, or specialized gear materials, may be required to ensure safe operation in such environments.
  9. Proper Handling and Lifting: When handling gear pulleys, proper lifting techniques should be employed to avoid strain or injuries. If gear pulleys are large or heavy, appropriate lifting equipment or machinery should be used. Operators should be trained in safe lifting practices and ensure that they have a clear path and adequate space when moving or positioning gear pulleys.
  10. Emergency Stop and Warning Systems: Gear pulley systems should be equipped with emergency stop mechanisms and clearly visible warning signs or labels. Emergency stops allow operators to quickly halt the machinery in case of an emergency or imminent danger. Warning signs or labels should provide clear instructions, cautions, and safety information to alert personnel about potential hazards associated with gear pulley operation.

In summary, the safety considerations when using gear pulleys include proper guarding, adherence to lockout-tagout procedures, adequate training and education, use of personal protective equipment, regular inspection and maintenance, adherence to load capacities and ratings, proper installation and alignment, awareness of hazardous environments, safe handling and lifting practices, and the presence of emergency stop and warning systems. By implementing these safety measures, the risk of accidents and injuries associated with gear pulley usage can be minimized, promoting a safe working environment.

gear pulley

How does the gear mechanism work within a gear pulley system?

In a gear pulley system, the gear mechanism plays a crucial role in transmitting mechanical power between rotating shafts. Here’s a detailed explanation of how the gear mechanism works within a gear pulley system:

The gear mechanism consists of two or more gears with interlocking teeth that mesh together. Each gear has a specific number of teeth and is mounted on a shaft. When the gears are connected within the system, they engage with each other and transfer rotational motion and torque from the driving gear to the driven gear.

Here’s how the gear mechanism works within a gear pulley system:

  1. Meshing of Gears: The gear mechanism starts with the meshing of gears. The teeth of one gear interlock with the teeth of another gear, creating a mechanical connection between them. The gears are positioned in such a way that their teeth engage properly, ensuring smooth and efficient power transmission.
  2. Rotation of the Driving Gear: The gear pulley system has a driving gear that receives rotational motion and torque from the power source, such as an electric motor or an engine. As the driving gear rotates, it transfers its rotational motion to the meshed gears.
  3. Transfer of Rotational Motion: When the driving gear rotates, the interlocking teeth of the meshed gears transmit the rotational motion to the driven gear. The rotation of the driving gear causes the driven gear to rotate in the opposite direction or in the same direction, depending on the arrangement of the gears.
  4. Speed and Torque Conversion: The gear mechanism enables speed and torque conversion within the gear pulley system. The ratio of the number of teeth on the driving gear to the number of teeth on the driven gear determines the speed and torque relationship between them. When the driving gear has a larger number of teeth than the driven gear, it results in speed reduction and torque amplification. Conversely, when the driven gear has more teeth, it leads to speed amplification and torque reduction.
  5. Direction Control: The arrangement of gears within the gear pulley system determines the direction of rotation. By meshing gears in specific configurations, the direction of rotation can be changed as needed. For example, meshing two gears with the same number of teeth results in the same direction of rotation, while meshing gears with a different number of teeth causes the driven gear to rotate in the opposite direction.
  6. Multiple Gear Systems: Gear pulley systems often incorporate multiple gears to achieve specific speed, torque, and direction requirements. By adding intermediate gears, idler gears, or compound gear arrangements, complex gear systems can be created to transmit power efficiently and adapt to the needs of the driven components. Multiple gears allow for more precise control over speed and torque, as well as the distribution of power to multiple output shafts.

The gear mechanism within a gear pulley system enables the efficient transmission of mechanical power, speed and torque conversion, direction control, and the creation of versatile power transmission systems. By utilizing the interlocking teeth of gears, gear pulley systems can effectively transfer rotational motion and torque between rotating shafts, enabling various applications in industries such as automotive, manufacturing, and machinery.

China best Customized Cast Iron Transmission Gear/V-Belt/Groove/Conveyor Pulley   wholesaler China best Customized Cast Iron Transmission Gear/V-Belt/Groove/Conveyor Pulley   wholesaler
editor by CX

2024-04-02

Gear Motor

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