Ruland, 69.9 mm OD 22 mm, 87.1 mm Length Bellow Coupling 22 mm

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€ 368,04

(excl. BTW)

€ 445,33

(incl. BTW)

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RS-stocknr.:
591-364
Fabrikantnummer:
MBC70-22-22-A
Fabrikant:
Ruland
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Merk

Ruland

Product Type

Bellow Coupling

Outside Diameter

69.9 mm

Length

87.1mm

Maximum Speed

10000rpm

Torque Rating

104.5Nm

Moment of Inertia

4.318 x 4-2 kg/m²

Misalignment - Angular

2.0°

Hub Material

Aluminium

Misalignment - Parallel

0.30mm

Misalignment - Axial

0.76mm

Bore Size B

22mm

Minimum Operating Temperature

-40°C

Bore Size A

22mm

Bellows Material

321 Stainless Steel

Maximum Operating Temperature

93°C

Series

MBC70

Standards/Approvals

REACH, RoHS3, DIN 912 12.9

Screw Size

M8

Land van herkomst:
US
The Ruland High Stiffness Bellows Coupling is engineered for precision in demanding positioning applications. Crafted from premium aerospace grade materials, it boasts two anodised aluminium hubs and a robust stainless steel bellows, delivering a lightweight yet durable solution for your mechanical needs. Designed to offer enhanced torsional stiffness with a balanced configuration, this coupling accommodates various misalignment forms while significantly reducing vibrations at speeds up to 10,000 RPM. Perfectly suited for a range of engineering scenarios, it is produced in an ISO 9001:2015 certified facility, ensuring strict quality controls and compliance with RoHS3 and REACH regulations. The meticulous manufacturing process guarantees that each unit meets peak performance standards, making it an exceptional choice for engineers and designers alike.

Optimised for precision positioning applications with high torsional stiffness

Lightweight design with reduced inertia for improved performance

Engineered to reduce vibration at high rotational speeds

Allows for flex under torsional loads while remaining rigid

Manufactured using advanced processes in a certified facility

Meets rigorous compliance standards for safety and environmental impact

Robust construction provides lasting durability in various conditions

Balance design enhances operational stability and efficiency

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