China Standard Screw Air Compressor Motors Part Flexible Coupling 1621020400 1621020600

Product Description

screw air compressor motors part flexible coupling 16215714/44 23748593

Pressure Sensor P.N
1089958 39875539 39877618 39929435 39853791 39853809 42852483
39883186 39921713 39853775 39853775 39853783 39875539

Temperature Sensor P.N
1 0571 7107,1 0571 7144,1 0571 7164,1 0571 7101,1 0571 7102,1 0571 7103,1 0571 7105,
1 0571 7106,1 0571 7108,1 0571 7141,1 0571 7140,1 0571 7116,1 0571 7155,1 0571 7151,
37952355,39921705,39538079,39271609,38433546,85652535,42853243,37952439,1,10005716,10005716,11507074,1119 0571 ,A98612120,98612122,A11507074,09Q060G1936,10057146,A10630674,A571571,10571275,108995800,39560628,

AQ:

Q1.Could you give me a brief introduction of your company?
A: HangZhou Sange Filter Co.,Ltd is a professional filters manufacturer/factory, specialized in filters field for 12 years, high quality with favorable price.

Q2. What is your product range?
A: Our company mainly produces nearly 2,000 kinds of filter elements. Mainly include: air filter, oil filter, air oil separator, diesel filter, water filter, hydraulic oil filter, oil-water separation assembly, brake drying filter, dust recovery filter, cement dust removal Filter element, precision filter element, etc.

Q3.What countries do you sell your products to?
The products have been widely sold in various provinces and cities in mainland China, and sold well in the United States, India, Singapore, Malaysia, Thailand,Chile, Colombia,Argentina,ZheJiang , South Korea, Russia, Peru, Libya, Indonesia, Laos, Cambodia ,Southeast Asian countries like Vietnam and so on.

Q4:Which machines can your product be applied to?
A: All kinds of domestic or imported air compressor, buses,
heavy goods vehicles, engineering machinery, environmental purification system etc..

Q5.What brands are involved in your product?
A:Atlas Copco, CHINAMFG Rand, Fusheng, Sullair, Liutech, Kobelco, Hitachi, CompAir, Bolaite, Jufeng, Kaishan, Fehe, Schneider, Quincy, Boge, Screw, Gardner Denver, Mitsui Seiki, Ganey, Kaesar, Rotocomp, Xihu (West Lake) Dis.in, Tanabe, United Osd, Success Engine, Inspur, Mattei, Iwata, AEUT-AP, Rotorcomp, HangZhou Xinda, Eccoair, Desran, Guli, Champion, etc.

Q6. Is customized filter or OEM available?
A: Yes, depends on your reiqured .Just offer your required sepcifications and drawings.

Q7. What’s your kind of packing?
A: Neutral brown carton cases or customized carton cases.

Q8. What’s the terms of payment?
A:30% T/T prepay ,100% T/T before shipment /delivery.

Q9. What’s your terms of delivery?
A: (1)FOB HangZhou/HangZhou (2)CFR (3)CIF.

Q10. How about your delivery time?
A: Generally, under MOQ quantity take 5-7 working days after receiving your advance payment.
The specific delivery time depends on models and the quantity of your order.

 

 

 

 

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flexible coupling

What are the real-world applications of flexible couplings in various industries?

Flexible couplings are widely used in a variety of industries to transmit power and motion between rotating shafts while accommodating misalignments and reducing vibrations. Some of the real-world applications of flexible couplings include:

  • Industrial Machinery: Flexible couplings are extensively used in industrial machinery such as pumps, compressors, fans, mixers, and conveyors. They help transmit power from motors to driven equipment, while absorbing misalignments and reducing shock loads and vibrations.
  • Automotive: In the automotive industry, flexible couplings are used in various applications, including drive shafts, steering systems, and engine accessories. They help transmit power and motion while allowing for misalignment and reducing torsional vibrations.
  • Aerospace: In aircraft and aerospace applications, flexible couplings are used in engine systems, landing gear, and flight control systems. They provide reliable power transmission while accommodating misalignment and reducing vibrations in the demanding aerospace environment.
  • Marine: Flexible couplings are used in marine propulsion systems to connect the engine to the propeller shaft. They help transmit power and motion while compensating for shaft misalignment and reducing vibrations in marine vessels.
  • Renewable Energy: In wind turbines and solar tracking systems, flexible couplings are used to transfer power and motion between the turbine or solar panel and the generator. They allow for misalignment caused by wind and sun direction changes, ensuring optimal energy conversion.
  • Oil and Gas: In the oil and gas industry, flexible couplings are used in pumps, compressors, and drilling equipment. They provide reliable power transmission while accommodating misalignments and reducing vibrations in harsh and demanding oilfield environments.
  • Mining and Construction: Flexible couplings are used in heavy-duty mining and construction equipment, including excavators, bulldozers, and loaders. They help transmit power from engines to drive systems while compensating for misalignments and reducing vibrations in rugged and challenging environments.
  • Food and Beverage: In food processing and packaging machinery, flexible couplings are used to transmit power and motion while meeting strict hygiene and safety requirements. They help prevent contamination while accommodating shaft misalignments.
  • Medical Equipment: Flexible couplings are used in medical devices and equipment, including imaging machines and robotic surgical systems. They help transmit motion and power while reducing vibrations and maintaining precision.
  • Textile Industry: In textile manufacturing machines, flexible couplings are used in spinning, weaving, and dyeing processes. They help transmit power efficiently while accommodating misalignments and reducing vibrations during high-speed operation.

These are just a few examples of the diverse applications of flexible couplings in various industries. Their ability to enhance power transmission efficiency, accommodate misalignments, and reduce vibrations makes them a versatile and indispensable component in modern machinery and equipment.

flexible coupling

What are the differences between flexible couplings and rigid couplings in terms of performance?

Flexible couplings and rigid couplings are two distinct types of couplings used in mechanical systems, and they differ significantly in terms of performance and applications.

  • Torsional Flexibility: The primary difference between flexible and rigid couplings lies in their ability to handle misalignments and torsional flexibility. Flexible couplings are designed with elements, such as elastomeric inserts or metal bellows, that can deform or twist to accommodate shaft misalignments, angular offsets, and axial movements. On the other hand, rigid couplings do not have any flexibility and maintain a fixed connection between the shafts, which means they cannot compensate for misalignment.
  • Misalignment Compensation: Flexible couplings can absorb and mitigate misalignment between shafts, reducing stress and wear on connected components. In contrast, rigid couplings require precise alignment during installation, and any misalignment can lead to increased loads on the shafts and bearings, potentially leading to premature failure.
  • Vibration Damping: Flexible couplings, especially those with elastomeric elements, offer damping properties that can absorb and dissipate vibrations. This damping capability reduces the transmission of vibrations and shocks through the drivetrain, improving the overall system performance and protecting connected equipment. Rigid couplings, being solid and without damping elements, do not provide this vibration damping effect.
  • Backlash: Flexible couplings can have some degree of backlash due to their flexibility, particularly in certain designs. Backlash is the play or free movement between connected shafts. In contrast, rigid couplings have minimal or no backlash, providing a more precise and immediate response to changes in rotational direction.
  • Torque Transmission: Rigid couplings are more efficient in transmitting torque since they do not have any flexible elements that can absorb some torque. Flexible couplings, while capable of transmitting substantial torque, may experience some power loss due to the deformation of their flexible components.
  • Applications: Flexible couplings are widely used in applications that require misalignment compensation, damping, and shock absorption, such as pumps, motors, and industrial machinery. On the other hand, rigid couplings are used in situations where precise alignment is critical, such as connecting shafts of well-aligned components or shafts that require synchronous operation, like in some encoder applications.

In summary, flexible couplings excel in applications where misalignment compensation, vibration damping, and shock absorption are required. They are more forgiving in terms of alignment errors and can accommodate dynamic loads. Rigid couplings, on the other hand, are used in situations where precise alignment and zero backlash are essential, ensuring direct and immediate power transmission between shafts.

flexible coupling

How does a flexible coupling handle angular, parallel, and axial misalignment?

A flexible coupling is designed to accommodate various types of misalignment between two rotating shafts: angular misalignment, parallel misalignment, and axial misalignment. The flexibility of the coupling allows it to maintain a connection between the shafts while compensating for these misalignment types. Here’s how a flexible coupling handles each type of misalignment:

  • Angular Misalignment: Angular misalignment occurs when the axes of the two shafts are not collinear and form an angle with each other. Flexible couplings can handle angular misalignment by incorporating an element that can flex and bend. One common design is the “spider” or “jaw” element, which consists of elastomeric materials. As the shafts are misaligned, the elastomeric element can deform slightly, allowing the coupling to accommodate the angular offset between the shafts while still transmitting torque.
  • Parallel Misalignment: Parallel misalignment, also known as offset misalignment, occurs when the axes of the two shafts are parallel but not perfectly aligned with each other. Flexible couplings can handle parallel misalignment through the same elastomeric element. The flexible nature of the element enables it to shift and adjust to the offset between the shafts, ensuring continuous power transmission while minimizing additional stresses on the machinery.
  • Axial Misalignment: Axial misalignment, also called end-play misalignment, occurs when the two shafts move closer together or farther apart along their common axis. Flexible couplings can handle axial misalignment through specific designs that allow limited axial movement. For instance, some couplings use slotted holes or a floating member that permits axial displacement while maintaining the connection between the shafts.

By providing the capability to handle angular, parallel, and axial misalignment, flexible couplings offer several advantages for power transmission systems:

  • They help to prevent premature wear and damage to the connected equipment, reducing maintenance and replacement costs.
  • They minimize vibration and shock loads, enhancing the overall smoothness and reliability of the machinery.
  • They reduce the risk of equipment failure due to misalignment-induced stresses, improving the system’s operational life.
  • They allow for easier installation and alignment adjustments, saving time and effort during setup and maintenance.

Overall, flexible couplings play a crucial role in handling misalignment and ensuring efficient power transmission in various industrial applications.

China Standard Screw Air Compressor Motors Part Flexible Coupling 1621020400 1621020600  China Standard Screw Air Compressor Motors Part Flexible Coupling 1621020400 1621020600
editor by CX 2024-04-25

flexible flange coupling

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