Ruland, 50.8 mm OD 18 mm, 61.3 mm Length Flexible Coupling 14 mm

小計(1 件)*

TWD8,030.00

(不含稅)

TWD8,431.50

(含稅)

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  • 準備從 2026年5月01日 起發貨
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RS庫存編號:
591-963
製造零件編號:
MBCK51-18-14-A
製造商:
Ruland
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品牌

Ruland

Product Type

Flexible Coupling

Outside Diameter

50.8 mm

Length

61.3mm

Maximum Speed

10000rpm

Torque Rating

45.2Nm

Moment of Inertia

8.157 x 10-5 kg/m²

Misalignment - Angular

2.0°

Misalignment - Parallel

0.25mm

Hub Material

Aluminium

Misalignment - Axial

0.50mm

Bore Size B

14mm

Bellows Material

321 Stainless Steel

Minimum Operating Temperature

-40°F

Bore Size A

18mm

Series

MBCK51

Maximum Operating Temperature

200°F

Standards/Approvals

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

Screw Size

M5

COO (Country of Origin):
US
The Ruland Bellows Coupling designed to deliver exceptional precision and reliability in demanding applications. Constructed from anodised aluminium and featuring a stainless steel bellows, this coupling offers a lightweight solution without compromising on strength or durability. Its advanced design boasts a balanced construction that effectively minimises vibration, even at speeds up to 10,000 RPM. The coupling is engineered to accommodate various forms of misalignment, enabling it to excel in precision positioning tasks. Additionally, this model adheres to stringent compliance standards, ensuring both quality and safety. Ideal for a myriad of industrial applications, it is manufactured in an ISO 9001:2015 certified facility, showcasing a commitment to excellence and reliability.

High stiffness design optimises performance in precision applications

Balanced construction significantly reduces vibration at high speeds

Compliant with RoHS3 and REACH standards for enhanced safety

Accommodates multiple forms of misalignment for versatile application

Crafted from selected materials sourced exclusively from North America

Manufactured under strict controls to guarantee superior quality

Lightweight design allows for low inertia improving responsiveness

Engineered with fewer convolutions for increased torsional stiffness

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