Ruland, 41.3 mm OD 16 mm, 51.7 mm Length Flexible Coupling 15 mm

Subtotaal (1 eenheid)*

€ 167,10

(excl. BTW)

€ 202,19

(incl. BTW)

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  • Verzending vanaf 07 april 2026
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RS-stocknr.:
592-933
Fabrikantnummer:
MBC41-16-15-A
Fabrikant:
Ruland
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Merk

Ruland

Product Type

Flexible Coupling

Outside Diameter

41.3 mm

Length

51.7mm

Maximum Speed

10000rpm

Torque Rating

28Nm

Moment of Inertia

30.605 x 10-6 kg/m²

Misalignment - Angular

2.0°

Misalignment - Parallel

0.25mm

Hub Material

Aluminium

Misalignment - Axial

0.50mm

Minimum Operating Temperature

-40°F

Bore Size A

16mm

Bellows Material

321 Stainless Steel

Bore Size B

15mm

Maximum Operating Temperature

200°F

Series

MBC41

Standards/Approvals

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

Screw Size

M4

Land van herkomst:
US
The Ruland High-stiffness bellows coupling is meticulously engineered for precision positioning applications, ensuring enhanced performance with its impressive torsional stiffness. Designed with 16mm x 15mm bores, it boasts an outer diameter of 41.3mm and a length of 51.7mm, making it an optimal choice for a variety of mechanical setups. The coupling features a balanced construction that mitigates vibration at high speeds, capable of handling up to 10,000 RPM. Its lightweight design, crafted from anodized aluminum and stainless steel, enables robust yet agile performance. Sourced exclusively from North American mills, this product is manufactured under strict conformities in an ISO-certified facility, ensuring both quality and compliance with RoHS3 and REACH standards. Perfectly suited for intricate systems, it blends durability with precision to accommodate various forms of misalignment without compromising on torque.

Constructed to ensure minimal vibration during high-speed operations

Engineered with fewer convolutions to enhance torsional stiffness

Machined from premium materials sourced exclusively from North America

Designed for minimal backlash, ensuring accurate performance

Capable of managing substantial misalignment without loss of performance

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