Ruland Bellows Coupling, 57.2mm Outside Diameter, 15 mm, 18 mm Bore, 82.2mm Length Flexible Coupling

Sous-total (1 unité)*

350,06 €

(TVA exclue)

423,57 €

(TVA incluse)

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  • Expédition à partir du 06 mars 2026
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Unité
Prix par unité
1 +350,06 €

*Prix donné à titre indicatif

N° de stock RS:
592-871
Référence fabricant:
MBC57-18-15-A
Fabricant:
Ruland
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Marque

Ruland

Bore

15 mm, 18 mm

Coupling Types

Bellows Coupling

Outside Diameter

57.2mm

Length

82.2mm

Fastening Type

Clamp

Torque Rating

60Nm

Pays d'origine :
US
The Ruland Bellows Coupling has been expertly engineered for precision positioning applications, offering exceptional torsional stiffness and reliability. Designed with 18 mm x 15 mm bores and an outer diameter of 57.2 mm, it is constructed from lightweight anodised aluminium and stainless steel, significantly reducing inertia while maintaining strength. The advanced manufacturing processes used ensure that the coupling excels in high speed operations, reaching speeds of up to 10,000 RPM. It effectively accommodates various misalignments due to its unique design, which features fewer convolutions than comparably sized couplings. Meeting international standards, this coupling is RoHS3, REACH, and Conflict Minerals compliant, ensuring its quality and sustainability. Crafted in the USA under stringent quality controls, it is an excellent choice for applications requiring high torque and minimal backlash.

Engineered for high torque capacities to meet demanding operational requirements
Specifically designed to minimise backlash enhancing precision in movement
Manufactured using top quality materials sourced from North American mills
Balanced design significantly reduces vibrations during high speed operation
Fewer convolutions lead to increased torsional stiffness compared to similar products
Complies with industry standards ensuring reliability and safety in usage
Easy installation process allows for streamlined integration into existing systems
Lightweight construction aids in minimising system inertia for improved performance

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