Product Description

Coresun Drive slewing drive worm gear for satellite antenna and satellite PV CPV solar tracking system
 

Model

SC3

Place of Origin

HangZhou,China

Brand

Coresun Drive

Load Weight

50-200kg

IP Class

IP65

Output Torque

760N.m

Tilting Moment Torque

1.1kN.m

Holding Torque

2.2kN.m

Precision

0.17°

Rated current

≤2.9A 

Gear Ratio

62:1

Efficiency

40%

SC3 Slewing Drive Worm Gear Mechanism Characteristics:

High Tilting Moment Torque
Tilting moment torque is the moment to guide a self-propelled mechanical overturning.Working load (lifting load in the crane) or partial load outside the tilting line, relative torque formed by the tilting line.

High Holding Torque
Holding torque is typically higher than running torque, and is limited primarily by the maximum current the motor can withstand. From a practical standpoint, holding torque is the sum of the magnetic force exerted by the coils to hold the motor’s current position, plus the detent torque.

High Output Torque
Divide the diameter of the output gear by the diameter of the input gear. Multiply the torque of the motor by the gear ratio to get the output torque. For example, a motor that puts out 10 lb.-feet of torque used with a gear reducer with a 10:1 gear ratio will give you 100 lb.-feet of torque at the output gear.
 

High Protection Grade
IP65, IP66 waterproof and dustproof performance for outdoor using condition
 

1, What are the differentiates between CHINAMFG with other supplier?     

Profession and reliability.

     Our advantages are multiple available technologies, strong quality assurance, and good at project & supply chain management.

 

2, Is there a cost for CHINAMFG service?

   There is no additional cost above the product and tooling price except third party service.

 

3, Will I be able to visit the supplier myself?

    First, all of our supply partner has undergone a series of screening and audit process, we can provide complete audit report to you.

    Secondly, if you want to perform your own independent supplier audit procedure, our representatives can accompany and assistant with you to achieve it.

 

4, How to deal with the quality problem?

    A. With our partners we perfom APQP at early stage in each project.

    B. Our factory must fully understand the quality concerns from customers and implement product & process quality requirements.

    C. Our quality professionals who perfom patrol inspection in our factories.

         We perform final inspectors before the goods are packed.

    D. We have 3rd party inspectors who perform final audit checks on the packed goods prior to dispatch from China.

 

5, Can you take responsibility for me?

    Of course, I’m happy to help you! But I just take responsitility fo my products.

Please offer a test report.

    If it was our fault, absolutely we can make a compensation for you, my friend!

 

6, Do you like to serve the client only with small order?

    We enjoy to grow up together with all our clients whatever big or small.

    Your will become bigger and bigger to be with us.

Production Photo and Application

Coresun Drive processes the metallographic analysis to ensure the quality of parts- worm shaft, slewing gear,slewing bearing and 100% finished product inspection.

slewing drive worm gear with 24VDC 12VDC motor is certificated by CE

CONTACT US

It is sincerely looking CHINAMFG to cooperating with you for and providing you the best quality product & service with all of our heart!

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Holding Torque: 2.2kn, M
Tilting Moment Torque: 1.1kn.M
Output Speed: 0.048rpm
Output Torque: 760n.M
Delivery Time: 7 Days
Weight: 12kg
Customization:
Available

|

Customized Request

worm gear

How do you prevent backlash and gear play in a worm gear mechanism?

Preventing backlash and gear play is essential for maintaining the accuracy and performance of a worm gear mechanism. Here’s a detailed explanation of how to prevent backlash and gear play in a worm gear mechanism:

Backlash refers to the play or clearance between the teeth of the worm and the worm wheel in a worm gear mechanism. It can result in inaccuracies, positioning errors, and reduced efficiency. Here are some measures to prevent or minimize backlash and gear play:

It’s important to note that completely eliminating backlash in a worm gear mechanism may not always be possible or desirable. Some applications require a certain level of backlash to accommodate thermal expansion, compensate for positional errors, or allow for smooth operation. The acceptable level of backlash depends on the specific requirements of the application.

When implementing measures to prevent backlash and gear play, it is crucial to strike a balance between minimizing backlash and ensuring smooth, reliable operation. The specific techniques and approaches used to minimize backlash may vary depending on the design, manufacturing, and application requirements of the worm gear mechanism.

worm gear

How do you address noise and vibration issues in a worm gear system?

Noise and vibration issues can arise in a worm gear system due to various factors such as misalignment, improper lubrication, gear wear, or resonance. Addressing these issues is important to ensure smooth and quiet operation of the system. Here’s a detailed explanation of how to address noise and vibration issues in a worm gear system:

1. Misalignment correction: Misalignment between the worm and the worm wheel can cause noise and vibration. Ensuring proper alignment of the gears by adjusting their positions and alignment tolerances can help reduce these issues. Precise alignment minimizes tooth contact errors and improves the meshing efficiency, resulting in reduced noise and vibration levels.

2. Lubrication optimization: Inadequate or improper lubrication can lead to increased friction and wear, resulting in noise and vibration. Using the correct lubricant with the appropriate viscosity and additives, and ensuring proper lubrication intervals, can help reduce friction and dampen vibrations. Regular lubricant analysis and replenishment can also prevent excessive wear and maintain optimal performance.

3. Gear inspection and replacement: Wear and damage to the gear teeth can contribute to noise and vibration problems. Regular inspection of the worm gear system allows for early detection of any worn or damaged teeth. Timely replacement of worn gears or damaged components helps maintain the integrity of the gear mesh and reduces noise and vibration levels.

4. Noise reduction measures: Various noise reduction measures can be implemented to minimize noise in a worm gear system. These include using noise-dampening materials or coatings, adding sound insulation or vibration-absorbing pads to the housing, and incorporating noise-reducing features in the gear design, such as profile modifications or helical teeth. These measures help attenuate noise and vibration transmission and improve overall system performance.

5. Resonance mitigation: Resonance, which occurs when the natural frequency of the system matches the excitation frequency, can amplify noise and vibration. To mitigate resonance, design modifications such as changing gear stiffness, altering the system’s natural frequencies, or adding damping elements can be considered. Analytical tools like finite element analysis (FEA) can help identify resonant frequencies and guide the design changes to reduce vibration and noise.

6. Isolation and damping: Isolation and damping techniques can be employed to minimize noise and vibration transmission to the surrounding structures. This can involve using resilient mounts or isolators to separate the gear system from the rest of the equipment or incorporating damping materials or devices within the gear housing to absorb vibrations and reduce noise propagation.

7. Tightening and securing: Loose or improperly tightened components can generate noise and vibration. Ensuring that all fasteners, bearings, and other components are properly tightened and secured eliminates sources of vibration and reduces noise. Regular inspections and maintenance should include checking for loose or worn-out parts and addressing them promptly.

Addressing noise and vibration issues in a worm gear system often requires a systematic approach that considers multiple factors. The specific measures employed may vary depending on the nature of the problem, the operating conditions, and the desired performance objectives. Collaborating with experts in gear design, vibration analysis, or noise control can be beneficial in identifying and implementing effective solutions.

worm gear

What are the benefits of using a worm gear mechanism?

Using a worm gear mechanism offers several benefits in various applications. Here are some of the advantages:

These benefits make worm gear mechanisms well-suited for a wide range of applications, including automotive systems, industrial machinery, elevators, robotics, and more. However, it’s important to consider the specific requirements and limitations of each application to ensure the optimal use of worm gears.

China Hot selling CZPT Drive Slewing Drive Worm Gear for  Satellite Antenna and  Satellite PV Cpv Solar Tracking System helical bevel gearChina Hot selling CZPT Drive Slewing Drive Worm Gear for  Satellite Antenna and  Satellite PV Cpv Solar Tracking System helical bevel gear
editor by CX 2024-03-30