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Flexible Couplings

Flexible couplings are mechanical devices that connect two shafts together while allowing a certain degree of misalignment, axial movement, or torsional vibration between them. They are designed to transmit torque from one shaft to another while compensating for any misalignment or occurring movement. Flexible couplings typically comprise two hubs or flanges, one attached to each shaft and a flexible element in between. The flexible element can be made of various materials, such as elastomers (rubber), metals (steel), or a combination of both. The material choice depends on the specific application and the coupling’s desired properties.

What is the Primary Function of a Flexible Coupler? What Causes Misalignments?

The primary purpose of a flexible coupler is to transmit power and rotational motion between two shafts while minimising misalignment effects. Misalignment can occur due to various factors, such as thermal expansion, manufacturing tolerances, or external forces acting on the system.

What is a Mechanical Coupling or Coupler?

A Coupling, or coupler, is a mechanical device designed for power transmission by connecting two rotating shafts together. Couplers can be rigid or flexible couplers widely used in motor control applications, including vehicles, machinery, and other mechanical systems. 

The Difference Between Rigid and Flexible Coupling

Rigid and flexible coupling differ based on their functions and adhered properties. Rigid couplings are used for precise alignments, requiring no movement between the rigid coupler and the shaft. On the other hand, flexible couplings provide a certain degree of flexibility in motion and misalignment between shaft couplers.

Potential Benefits of Flexible Couplings

Flexible couplings offer several benefits in various mechanical systems. Some key advantages of using flexible couplings include:

  • They are highly flexible.
  • They provide misalignment compensation, improving performance and durability.
  • Shock absorption and reduced vibrations.
  • Transmit torque between shafts, ensuring reliable power transmission.
  • Flexible couplings possess sufficient torsional stiffness for accurate torque transmission.
  • Easy to install with minimal maintenance requirements.
  • Compact and lightweight.
  • Durable and versatile with a long lifespan.

Types of Flexible Couplings

There are several types of flexible couplings available, including:

  • Gear Couplings – These couplings use gear teeth to transmit torque between the shafts, accommodating high torque and misalignment. 
  • Jaw Couplings – Jaw couplers comprise two hubs with curved jaws and an elastomeric insert. They provide a simple and economical solution for transmitting torque while allowing angular misalignment.
  • Oldham Couplings – Oldham couplings use three discs, with two external discs connected to the shafts and a middle disc serving as a connecting element. Oldham couplers significantly compensate for parallel misalignment but have limited angular misalignment capacity.
  • Bellow Couplings – These couplings can accommodate various misalignment forms while maintaining a balanced design that minimises vibration during high-speed operations.
  • Diaphragm Couplings – Diaphragm couplings are highly flexible and use a series of thin metallic diaphragms to transmit torque. They allow significant misalignment and torsional vibration dampening in various motion control applications.
  • Fluid Couplings – Fluid couplings use hydraulic fluid to transmit torque and are used where smooth torque transmission is required without shock loads.
  • Disc Couplings – Disc couplings integrate a series of thin metallic discs stacked alternately, ensuring high torque transmission and misalignment compensation.

Best Flexible Couplings Available at Enrgtech

Enrgtech carries extensive collections of branded flexible couplings, such as Huco couplings, KTR couplings, Omron couplings, and more. We offer these mechanical couplings, rubber couplings, tyre couplings, and specialist couplings at the best possible prices and speedy delivery services worldwide. Visit our website to discover other power transmission couplings available in bulk.


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Rohs Verified
PCMR25-8-6-A, Ruland
78 In Stock
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£ 32.56
5 +
£ 31.25
10 +
£ 30.61
Rohs Verified
PHE 1070TGGRID, SKF
Pre Order
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£ 56.17
Rohs Verified
PHE 1080TGHCOVER, SKF
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£ 93.96
Rohs Verified
PHE 25GCRSB, SKF
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£ 167.74
Rohs Verified
PHE 35GCCOVER, SKF
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£ 471.19
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PHE 35GCRSB, SKF
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£ 332.64
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MBC25-12-8-A, Ruland
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£ 48.77
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PHE L150HUB, SKF
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£ 39.90
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FCMR19-5-5-A, Ruland
163 In Stock
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£ 34.06
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£ 32.70
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£ 32.02
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450H25.31, Huco
8 In Stock
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£ 29.13
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£ 27.98
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£ 27.37
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MBC25-8-8-A, Ruland
4 In Stock
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£ 89.68
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£ 86.10
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£ 84.31
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592.45.3838, Huco
2 In Stock
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£ 100.72
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£ 92.97
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£ 91.06
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592.56.3838, Huco
2 In Stock
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£ 158.54
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592.66.5858, Huco
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£ 186.77
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593.66.4646, Huco
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£ 186.77
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593.82.6565, Huco
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£ 273.04
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554.56.5252, Huco
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£ 144.16
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£ 133.06
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£ 130.32
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555.56.5454, Huco
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£ 144.16
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£ 133.06
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£ 130.32
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MJC57-25-A, Ruland
1 In Stock
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£ 66.95
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£ 64.27
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£ 62.93
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PCMR13-3-3-A, Ruland
254 In Stock
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£ 23.09
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£ 22.14
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£ 21.71
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MJC51-12-A, Ruland
1 In Stock
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£ 50.96
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£ 48.92
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£ 47.90
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MBS19-5-5-A, Ruland
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£ 37.20
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£ 36.15
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£ 35.17
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MJC57-32-A, Ruland
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£ 66.97
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£ 64.29
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£ 62.95
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MJCC57-30-A, Ruland
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£ 83.09
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£ 79.78
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£ 78.10
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PSMR25-10-10-A, Ruland
43 In Stock
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£ 24.31
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£ 23.34
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£ 22.85
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New Items
New items
E69-C08B, Omron

E69-C08B, Omron

Couplings for Rotary Encoders Couplings suitable for use with the E6C3 series of rotary encoders.
New items
MJC25-8-A, Ruland

MJC25-8-A, Ruland

Clamp Style Clamp style jaw couplings from Ruland. These couplings have a large torque capacity and a balanced design. To complete your assembly two hubs must be purchased. A jaw spider must be placed in between these couplings. Please view our essential extras for suitable jaw spider torque disks. Note Coupling shown for illustration purposes only. Two hubs required per coupling assembly. A complete coupling assembly comprises two hubs plus an appropriate torque disc ; note that these parts must all be ordered separately Jaw Couplings A range of zero backlash curved jaw couplings. Three piece coupling comprising two aluminium hubs and an elastic insert (spider). Polyurethane spider provides damping of impulse loads, minimising shock to the motor and other sensitive equipment. Offered in two hardness levels the spiders can be used to customise the coupling performance. Low to medium torsional rigidity and strength An electrically isolating coupling solution A balanced design suited to high bearing loads and moderate inertia Accommodates slight angular, axial and parallel misalignments One complete coupling comprises two aluminium hubs and a spider (order separately) Use 92 Shore spider to give the best dampening characteristics and 98 Shore spider for the best torsional rigidity Snap fit spider ensures zero backlash and high torque capabilities Fail-safe design allowing operation of coupling even if spider element fails 2 hubs required per coupling assembly Nominal Size (mm) Hardness (Shore A) Maximum Angular Misalignment (mm) Maximum Axial Misalignment (mm) Maximum Axial Motion (mm) Rated Torque (Nm) Torsional Stiffness (Nm/rad.) Break Torque (Nm) 19 92 1 0.13 0.8 3 31 3 19 98 1 0.08 0.8 5 50 5 25 92 1 0.15 1.0 7 115 7 25 98 1 0.09 1.0 12 175 12 33 92 ...
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321.12.2424, Huco

321.12.2424, Huco

Nickel Bellows Couplings The bellows is a traditional mechanism for flexibly connecting two rotating shafts with angular, parallel and axial offset capability. Can be used with the RS range of bore reducers. High torsional stiffness High quality of translation of motion Suitable for drives associated with instruments Grub screw fixing Coupler Diameter (mm) Number of Active Convolutions Max. Dynamic Torque (Ncm) Torsional Deflection (Arc mins per Ncm) Max. Axial Offset (mm) Max. Angular Offset (°) Max. Parallel Misalignment (mm) Wall Thickness (microns) Approx. Weight (g) 7 7 2.5 n/a ±1.0 11 ±1.0 25 2 12 13 6.0 1.2 -2.2 14 +1.6 to -2.2 38 7 17 13 25.0 0.43 -4.0 18 +3.0 to -4.0 50 7 25 9 250.0 0.08 -3.5 10 +2.7 to -3.5 90 13 Note Service life can be affected with load reversal applications or when driving loads incrementally. Bore size attirbute refers to dimensions B1 and B2 in in that order.
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HWT442, OPTIBELT

HWT442, OPTIBELT

The OPTIBELT jaw coupling with flexible elements for the flexible connection of shafts. This coupling can easily be connected and does not require a high accuracy of the shaft alignment. This couplings are distortion free coupling. Compensation of shaft misalignments Taper bush number is 1610 Fast and easy installation High durability
New items
MJC33-12-A, Ruland

MJC33-12-A, Ruland

Clamp Style Clamp style jaw couplings from Ruland. These couplings have a large torque capacity and a balanced design. To complete your assembly two hubs must be purchased. A jaw spider must be placed in between these couplings. Please view our essential extras for suitable jaw spider torque disks. Note Coupling shown for illustration purposes only. Two hubs required per coupling assembly. A complete coupling assembly comprises two hubs plus an appropriate torque disc ; note that these parts must all be ordered separately Jaw Couplings A range of zero backlash curved jaw couplings. Three piece coupling comprising two aluminium hubs and an elastic insert (spider). Polyurethane spider provides damping of impulse loads, minimising shock to the motor and other sensitive equipment. Offered in two hardness levels the spiders can be used to customise the coupling performance. Low to medium torsional rigidity and strength An electrically isolating coupling solution A balanced design suited to high bearing loads and moderate inertia Accommodates slight angular, axial and parallel misalignments One complete coupling comprises two aluminium hubs and a spider (order separately) Use 92 Shore spider to give the best dampening characteristics and 98 Shore spider for the best torsional rigidity Snap fit spider ensures zero backlash and high torque capabilities Fail-safe design allowing operation of coupling even if spider element fails 2 hubs required per coupling assembly Nominal Size (mm) Hardness (Shore A) Maximum Angular Misalignment (mm) Maximum Axial Misalignment (mm) Maximum Axial Motion (mm) Rated Torque (Nm) Torsional Stiffness (Nm/rad.) Break Torque (Nm) 19 92 1 0.13 0.8 3 31 3 19 98 1 0.08 0.8 5 50 5 25 92 1 0.15 1.0 7 115 7 25 98 1 0.09 1.0 12 175 12 33 92 1 0.15 1.0 9 590 9 33 ...
New items
MWC15-3-3-SS, Ruland

MWC15-3-3-SS, Ruland

Stainless Steel Flexible Shaft Couplings Designed to perform where higher speeds, greater misalignment, and limited lubrication would exceed the capabilities of other couplings. Each coupling is manufactured as one piece, thereby eliminating mechanical joints and possible failure points.Two fixing styles available:,Typical applications include encoders, stepper motors, robotics, measuring instruments, servo systems, pumps, valves, fans etc., (i) Set Screw style is secured using one grub-screw per shaft (staggered at 120°) , (ii) Clamp style fixing uses one socket head cap screw per shaft. Constant velocity couplings with high torque capacity and zero backlash Torsionally rigid one-piece construction Not temperature sensitive High or low speed operation and reversible No lubrication required Up to 3° of axial misalignment allowable Note The coupling shown represents the clamp style fixing
New items
FCMR38-16-16-SS, Ruland

FCMR38-16-16-SS, Ruland

Stainless Steel Flexible Shaft Couplings Designed to perform where higher speeds, greater misalignment, and limited lubrication would exceed the capabilities of other couplings. Each coupling is manufactured as one piece, thereby eliminating mechanical joints and possible failure points.Two fixing styles available:,Typical applications include encoders, stepper motors, robotics, measuring instruments, servo systems, pumps, valves, fans etc., (i) Set Screw style is secured using one grub-screw per shaft (staggered at 120°) , (ii) Clamp style fixing uses one socket head cap screw per shaft. Constant velocity couplings with high torque capacity and zero backlash Torsionally rigid one-piece construction Not temperature sensitive High or low speed operation and reversible No lubrication required Up to 3° of axial misalignment allowable Note The coupling shown represents the clamp style fixing
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