NTN 23226EMKW33 Taper 130 mm ID Spherical Roller Bearing, 230 mm OD

Sous-total (1 unité)*

1 184,21 €

(TVA exclue)

1 432,89 €

(TVA incluse)

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  • Expédition à partir du 13 avril 2026
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Unité
Prix par unité
1 +1 184,21 €

*Prix donné à titre indicatif

N° de stock RS:
454-568
Référence fabricant:
23226EMKW33
Fabricant:
NTN
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Marque

NTN

Product Type

Spherical Roller Bearing

Inside Diameter

130 mm

Race Width

80mm

Bore Type

Taper

Roller Material

100Crmo7

Cage Material

Brass

Maximum Speed - Oil

2600rpm

Standards/Approvals

RoHS Certificate of Compliance

Series

232 Sries

Dynamic Load Rating

958kN

Outside Diameter

230 mm

Internal Clearance

CN

Maximum Speed - Grease

1900rpm

Limiting Speed

2600rpm

Bearing Material

Through Hardened Steel

Static Load Rating

1130kN

Race Type

Spherical

Pays d'origine :
IT
The NTN Spherical Roller Bearing represents a pinnacle of engineering designed for high-performance and reliability. Featuring an internal diameter of 130 mm and external diameter of 230 mm, this bearing is crafted to accommodate misalignment and heavy radial loads while maintaining optimal functionality. Ideal for complex machinery, it excels in both dynamic and static conditions, ensuring peak performance even in the most demanding environments. The robust design integrates a durable construction, capable of withstanding extreme temperature variations from -40 °C to 200 °C. With a mass of 13.38 kg, it offers a substantial yet efficient solution for various applications requiring durable and dependable support.

Optimised design for enhanced load capacity and longevity

Accommodates misalignment for seamless operation

Designed to endure high operational temperatures

Includes multiple lubrication holes for efficient maintenance

Built with fatigue limit load capability for extended service life

Features a dynamic load rating to ensure robust performance under stress

Precision-engineered for minimal friction and improved energy efficiency

Utilises high-quality materials for added strength and durability

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