Ruland, 38.1 mm OD 18 mm, 57.2 mm Length 14 mm Flexible Beam Coupling

Subtotaal (1 eenheid)*

€ 133,93

(excl. BTW)

€ 162,06

(incl. BTW)

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  • Klaar voor verzending vanaf 27 april 2026
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RS-stocknr.:
591-480
Fabrikantnummer:
FSMR38-18-14-A
Fabrikant:
Ruland
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Merk

Ruland

Product Type

Flexible Beam Coupling

Outside Diameter

38.1 mm

Length

57.2mm

Maximum Speed

6000rpm

Torque Rating

9.04Nm

Moment of Inertia

30.032 x 10-6 kg/m²

Number of Beams

6

Misalignment - Angular

3.0°

Misalignment - Parallel

0.76mm

Style

Set Screw

Misalignment - Axial

0.38mm

Minimum Operating Temperature

-40°C

Bore Size A

18mm

Material

7075-T651 Extruded Drawn Aluminium Bar

Bore Size B

14mm

Maximum Operating Temperature

107°C

Series

FSMR38

Standards/Approvals

DIN 912 12.9, REACH, RoHS3

Screw Size

M6

Land van herkomst:
US
The Ruland Six beam coupling offers exceptional performance in power transmission applications, ideal for operations involving servo motors and lead screws. Engineered with a robust aluminium construction, this coupling guarantees lightweight efficiency without compromising on strength. Its innovative design incorporates two sets of three spiral cuts, greatly enhancing torque capacity and minimising backlash, delivering a balanced performance even at high speeds of up to 6,000 RPM. This coupling's unique design enables it to perform reliably in environments with specific alignment requirements, ensuring smooth operation and durability through its zero-backlash feature. The user-friendly installation process is further complemented by its adherence to high manufacturing standards, ensuring a quality product sourced from North American materials.

Balanced construction reduces vibration at high speeds

Manufactured under strict controls for consistent quality

Lightweight design minimises inertia for improved responsiveness

Sourced exclusively from North American mills for quality assurance

User-friendly installation procedure for quick setup

RoHS3 and REACH compliant, ensuring environmental safety

Optimal performance under angular and parallel misalignment

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