Ruland, 41.3 mm OD, 55 mm Length 17 mm Flexible Coupling 11 mm

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₩322,440.68

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  • 2026년 3월 13일 부터 배송
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RS 제품 번호:
593-377
제조사 부품 번호:
MDCDK41-17-11-A
제조업체:
Ruland
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브랜드

Ruland

Product Type

Flexible Coupling

Outside Diameter

41.3 mm

Bore Size A

17mm

Length

55mm

Bore Size B

11mm

Maximum Speed

10000rpm

Hub Material

Aluminium

Style

Clamp

Minimum Operating Temperature

-40°F

Membrane Material

302 Stainless Steel

Maximum Operating Temperature

200°F

Series

MDCDK41

Standards/Approvals

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

Screw Size

M4

COO (Country of Origin):
US
The Ruland Clamp Double Disc Coupling offers an innovative solution for connecting shafts with a lightweight and flexible design. Engineered with precision, it is adept at accommodating various degrees of misalignment while ensuring a secure connection. Crafted from high-quality anodised aluminium, this coupling achieves zero-backlash and is built to withstand speeds of up to 10,000 RPM, making it ideal for demanding applications in industries such as semiconductor, solar, and machine tool manufacturing. With a focus on performance, this coupling is designed to provide excellent torque capabilities while maintaining its rigidity and stability. The use of stainless steel disc springs allows for individual bending, significantly reducing vibrations and increasing overall efficiency during operation. Manufactured in a rigorous environment, this coupling is RoHS3 and REACH compliant, thus promoting responsible engineering practices.

Lightweight design facilitates easy handling and installation

Zero backlash functionality ensures precise movement and positioning

Balanced design minimises vibrations at high speeds

Constructed from materials compliant with environmental standards

Slip resistant keyways enhance torque capacity and reliability

Machined from solid bar stock for exceptional durability

Versatile for various applications across sectors including testing and measurement

Dynamic torque ratings optimise performance under varying conditions

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