Ruland, 30 mm OD 12 mm, 38 mm Length 9 mm Flexible Coupling

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€ 96,86

(excl. BTW)

€ 117,20

(incl. BTW)

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  • Verzending vanaf 06 april 2026
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RS-stocknr.:
604-225
Fabrikantnummer:
MWC30-12-9-A
Fabrikant:
Ruland
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Merk

Ruland

Product Type

Flexible Coupling

Outside Diameter

30 mm

Length

38mm

Maximum Speed

6000rpm

Torque Rating

4.6Nm

Moment of Inertia

7.958 x 10-6 kg/m²

Number of Beams

4

Misalignment - Angular

3.0°

Style

Clamp

Misalignment - Parallel

0.38mm

Misalignment - Axial

0.25mm

Material

7075-T651 Extruded Drawn Aluminium Bar

Bore Size A

12mm

Minimum Operating Temperature

-40°F

Bore Size B

9mm

Maximum Operating Temperature

225°F

Series

MWC30

Standards/Approvals

REACH, DIN 912 12.9, RoHS3

Screw Size

M4

Land van herkomst:
US
The Ruland Clamp style four beam coupling is engineered for precision and performance in high-speed applications. With a striking blend of robust aluminum construction and meticulous machining processes, it ensures zero backlash while enhancing torque capacity and reducing vibration. Designed specifically for metric dimensions, this coupling comfortably fits within smaller envelopes, making it ideal for seamless integrations from single beam couplings. It stands out with its balance and adaptability, allowing reliable operation at speeds up to 6,000 RPM. With the incorporation of advanced engineering principles, this product is crafted from high-grade 7075 aluminum, ensuring lightweight characteristics without compromising strength. Whether working in rigorous environments demanding high torque specifications or needing precise alignment, this coupling delivers exceptional reliability while maintaining stringent manufacturing quality from North American sources.

Machined from a single piece of high-grade aluminum for superior strength

Balanced design significantly reduces operational vibration

Attention to metric specifications ensures compatibility across various applications

Zero-backlash design optimizes torque transmission and precision

Lightweight construction contributes to lower inertia during operation

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