Shaft Couplings
Jaw, beam, bellows, Oldham, rigid and disc couplings.
Also searched as: flexible couplingjaw couplingbellows couplingrigid couplingoldham
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16mm Oldham Coupling
Diameter: 16 mm
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16mm Oldham Coupling for T8 Z-axis Screw
Diameter: 16 mm
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3-Jaw Steel Coupling, 10-25mm Inner Diameter
Inner Diameter: 10-25 mm
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Aluminium XB2530 Flexible Shaft Coupling 2 Jaw D25 Plum
Diameter: 25 mm
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Aluminum Encoder Shaft Rigid Coupling, 3-8mm bore diameter
Bore Diameter: 3-8mm
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BF D25 L34 Elastic Flexible Jaw Coupling Shaft Coupler
Length: 34 mmOutside Diameter: 25 mm
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CNC Motor Encoder Curved Jaw Coupling, 5/6/8/10 mm, 25x30 mm Jaw Clamp Style Shaft Coupler
Bore: 6mm 8mmOutside Diameter: 40x55mm
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CNC Shaft Coupling Rigid Clamping Jaw Coupling, Bore 6 x 10 mm
Bore: 6 x 10 mmTemperature Rating: 300°C
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D25L30 Three Jaw Aluminium Plum Flexible Shaft Coupling Motor Connector, 5/6/6.35/8/10/12mm bore
Bore: 5/6/6.35/8/10/12 mm
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D25L39 Oldham Slider Coupling
Diameter: 25 mmLength: 39 mm
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Flexible Jaw Coupling Clamp Fixing For Nema 17 Motor D20 L30
Length: 30 mmOutside Diameter: 20 mm
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Jaw Coupling OD 40x55mm, 6/8mm bore
Length: 30mmOutside Diameter: 20mm
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L-type Three-jaw Coupling Steel L110 D85L108
Size: 20mm to 45mm
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Motor Jaw Spider Shaft Coupler Flexible Plum Coupling, 40mm Diameter 50mm Length, Bore 8mm 9mm 10mm 11mm 12mm 15mm 20mm to 24mm
Bore: 8mm, 9mm, 10mm, 11mm, 12mm, 15mm, 20mm to 24mmDiameter: 40 mmLength: 50 mm
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Red Rigid Coupling Set Screw D14xL25/D12xL20
Size: D14xL25/D12xL20
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Rigid Coupling D25L30, 6-12mm Bore
Bore: 6-12mmDiameter: 25mmLength: 30mm
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Rigid Flange Coupling Shaft Connector, 2-14mm inner diameter
Inner Diameter: 2-14mm
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Rigid Shaft Coupler D32L45
Length: 45mmOutside Diameter: 32mm
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Rigid coupling Integrated variable diameter with keyway
Inner Hole: 10-20Length: 45Outer Diameter: 40
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Stainless Steel Rigid Coupling D14L22, 3.17mm-8mm Double-Hole
Bore: 3.17mm-8mmSize: D14L22
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About shaft couplings
Shaft couplings are mechanical components used to connect two shafts together, transmitting torque while accommodating various degrees of misalignment. Key types include jaw, beam, bellows, Oldham, rigid, and disc couplings. Jaw couplings, often employing an elastomeric spider, provide vibration dampening and moderate misalignment capabilities. Beam couplings are typically machined from a single piece of material, offering high flexibility for angular and parallel misalignment in light-duty applications. Bellows couplings excel in high-precision and high-speed applications, providing zero backlash and accommodating significant angular misalignment. Oldham couplings utilize a central disc to handle parallel misalignment effectively. Rigid couplings are used when precise shaft alignment is critical and no misalignment compensation is desired. Disc couplings, available in single or double disc configurations, offer high torque capacity and zero backlash, suitable for servo applications. Selection criteria include torque rating (Nm), maximum RPM, bore diameter (mm or inches), angular misalignment capacity (°), parallel misalignment capacity (mm), and axial displacement capacity (mm). Common materials include aluminum, stainless steel, and various engineering plastics for spiders, with finishes like anodization or passivation.
How to choose
When selecting a shaft coupling, first determine the required torque transmission capacity and maximum operating RPM. Next, assess the type and degree of misalignment present: angular, parallel, or axial. This will dictate the fundamental coupling type (e.g., rigid for zero misalignment, jaw for moderate, bellows for high angular). Then, specify the bore diameters for both shafts, ensuring compatibility with standard coupling bore ranges. Finally, consider environmental factors such as temperature, chemical exposure, and vibration, which will influence material selection (e.g., stainless steel for corrosive environments, specific elastomers for temperature ranges) and overall coupling design for optimal performance and longevity.