Ruland, 25.4 mm OD 12 mm, 34.2 mm Length Flexible Coupling 12 mm

小計(1 件)*

TWD5,444.00

(不含稅)

TWD5,716.20

(含稅)

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  • 2026年4月10日 發貨
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RS庫存編號:
592-222
製造零件編號:
MBCK25-12-12-A
製造商:
Ruland
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品牌

Ruland

Product Type

Flexible Coupling

Outside Diameter

25.4 mm

Length

34.2mm

Maximum Speed

10000rpm

Torque Rating

6.8Nm

Moment of Inertia

2.618 x 10-6 kg/m²

Misalignment - Angular

1.5°

Hub Material

Aluminium

Misalignment - Parallel

0.10mm

Misalignment - Axial

0.30mm

Minimum Operating Temperature

-40°C

Bore Size A

12mm

Bore Size B

12mm

Bellows Material

321 Stainless Steel

Series

MBCK25

Maximum Operating Temperature

93°C

Standards/Approvals

DIN 912 12.9, ISO 9001:2015, REACH, RoHS3

Screw Size

M3

COO (Country of Origin):
US
The Ruland High Stiffness Bellows Coupling is designed for precision positioning applications, combining advanced engineering with robust materials for maximum performance. Crafted with anodised aluminium hubs and Type 321 stainless steel bellows, it ensures lightweight characteristics and low inertia, allowing for seamless operation at speeds up to 10,000 RPM. The unique construction helps accommodate various forms of misalignment while resisting vibration, offering an ideal solution for demanding environments. Manufactured in an ISO 9001:2015 facility, this coupling meets rigorous standards and boasts compliance with RoHS3 and REACH regulations. Its balanced design enhances reliability while the superior bonding method for the bellows guarantees durability under torsional loads. For design engineers seeking exceptional quality and performance, this coupling provides a trustworthy connection for critical applications.

Designed to enhance torsional stiffness ensuring precision in sensitive applications

Constructed from high quality materials for optimal performance and durability

Accommodates misalignment effectively reducing wear and tear on connected components

Easy installation with standard metric hardware for convenience

Balanced design minimises vibration enhancing operational stability

Lightweight construction reduces the overall inertia of the system

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