Ruland, 31.8 mm OD 8 mm, 44.5 mm Length 8 mm Flexible Beam Coupling

小計(1 件)*

TWD8,986.00

(不含稅)

TWD9,435.30

(含稅)

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  • 2026年4月08日 發貨
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RS庫存編號:
592-485
製造零件編號:
FCMR32-8-8-SS
製造商:
Ruland
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品牌

Ruland

Product Type

Flexible Beam Coupling

Outside Diameter

31.8 mm

Length

44.5mm

Maximum Speed

6000rpm

Torque Rating

16.08Nm

Moment of Inertia

32.426 x 10-6 kg/m²

Misalignment - Angular

3.0°

Number of Beams

6

Style

Clamp

Misalignment - Parallel

0.38mm

Misalignment - Axial

0.25mm

Bore Size B

8mm

Material

303 Stainless Steel

Minimum Operating Temperature

-40°C

Bore Size A

8mm

Series

FCMR32

Maximum Operating Temperature

176°C

Standards/Approvals

DIN 912 12.9, REACH, RoHS3

Screw Size

M5

COO (Country of Origin):
US
The Ruland Six beam coupling offers exceptional performance for light-duty power transmission applications. Designed with precision, this clamp style coupling seamlessly connects servo motors to lead screws, ensuring maximum torque capacity while minimising windup effects. Its balanced design promotes reduced vibration, making it suitable for high-speed operations up to 6,000 RPM. Crafted from 303 stainless steel, the coupling's construction guarantees durability and reliability, sourced from North American mills. With proprietary Nypatch anti-vibration hardware, it ensures even screw seating and longevity in repeated installations, while meeting stringent safety and compliance standards. Manufactured with rigorous quality controls in Marlborough, MA, this coupling not only excels in performance but also adheres to RoHS3 and REACH regulations. It’s an ideal choice for those seeking superior coupling solutions.

Dynamic torque ratings provide valuable performance guidance

Balanced design facilitates smoother operation at high speeds

Includes detailed installation instructions for straightforward setup

Anti-vibration feature improves reliability and reduces wear

Suitable for applications requiring maximum alignment parameters

Temperature range accommodates diverse operational environments

Torsional stiffness optimises performance under varying load conditions

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