Ruland, 41.3 mm OD, 55 mm Length 18 mm Flexible Coupling 16 mm

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RS Stock No.:
591-016
Mfr. Part No.:
MDCDK41-18-16-A
Manufacturer:
Ruland
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Brand

Ruland

Product Type

Flexible Coupling

Outside Diameter

41.3 mm

Length

55mm

Bore Size A

18mm

Bore Size B

16mm

Maximum Speed

10000rpm

Hub Material

Aluminium

Membrane Material

302 Stainless Steel

Minimum Operating Temperature

-40°F

Maximum Operating Temperature

200°F

Series

MDCDK41

Standards/Approvals

ASTM B580 Type B, Class 2, DIN 912 12.9, MIL-A-8625 Type II, REACH, RoHS3

Screw Size

M4

COO (Country of Origin):
US
The Ruland Clamp Double Disc Coupling is engineered for precision and reliability in dynamic applications. Its lightweight, yet robust design combines two anodised aluminium hubs and stainless steel disc springs to manage misalignment effectively while ensuring a zero-backlash performance. With a balanced configuration, it reduces vibration during high-speed operation, making it ideal for sophisticated sectors such as semiconductor manufacturing and machine tools. Crafted from superior materials and subjected to rigorous quality control in Marlborough, MA, this coupling meets stringent engineering standards for maximal torque transmission and longevity. From its thoughtful design to its impeccable performance metrics, this coupling provides an excellent solution for modern mechanical systems requiring exacting specifications.

Constructed from high-quality 2024-T351 aluminium and type 302 stainless steel for durability

Accommodates various misalignment types for seamless integration into existing systems

Designed for maximum speeds of up to 10,000 RPM, ensuring efficient performance

All components are RoHS3 and REACH compliant for environmentally conscious usage

Backed by proprietary processes and strict manufacturing controls for consistent quality

Supports a wide operating temperature ranging from -40°F to 200°F to suit diverse conditions

Includes metric screws that exceed DIN standards for superior torque capability

Lightweight configuration reduces inertia, enhancing responsive operation in precise applications

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