Ruland 19 mm Oldham Coupling Polyetheretherketone 4500rpm

Sous-total (1 unité)*

43,66 €

(TVA exclue)

52,83 €

(TVA incluse)

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Unité
Prix par unité
1 +43,66 €

*Prix donné à titre indicatif

N° de stock RS:
603-359
Référence fabricant:
OD12/19-PEK
Fabricant:
Ruland
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Marque

Ruland

Product Type

Oldham Coupling

Maximum Speed

4500rpm

Material

Polyetheretherketone

Misalignment - Angular

0.5°

Misalignment - Axial

0.004in

Misalignment - Parallel

0.008in

Outside Diameter

19 mm

Maximum Operating Temperature

300°F

Standards/Approvals

RoHs and Reach

Pays d'origine :
US
The Ruland Oldham coupling disk is engineered for precision and reliability, serving as a vital component in sophisticated mechanical systems. Designed to accommodate misalignments with grace, it boasts a construction from high-performance PEEK material, ensuring both high temperature and corrosion resistance. The innovative three-piece design allows for seamless integration with various hub configurations, making it versatile for diverse applications. With a diameter of 0.750 inches, this component caters to high-speed environments, providing a balanced operation that significantly reduces vibrations. Its RoHS3 and REACH compliance emphasizes its suitability for modern, environmentally conscious engineering needs, offering users peace of mind while guaranteeing top-notch performance. Whether you're in the realm of robotics, conveyor systems, or other machinery, this coupling disk promises to enhance operational efficiency and longevity.

High-performance PEEK material ensures durability in demanding environments

Accommodates significant misalignment, optimizing performance and longevity

Balances vibrations at speeds up to 6,000 RPM, enhancing mechanical stability

Flexibly integrates with various hub designs via a versatile three-piece configuration

Compliant with RoHS3 and REACH standards, underscoring its environmentally conscious design

Ensures low bearing loads, safeguarding sensitive components from wear and tear

Offers a lightweight solution without compromising on strength or functionality

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