NTN 23034EAW33 170 mm ID Spherical Roller Bearing, 260 mm OD

Sous-total (1 unité)*

1 020,74 €

(TVA exclue)

1 235,10 €

(TVA incluse)

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  • Expédition à partir du 26 mars 2026
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Unité
Prix par unité
1 +1 020,74 €

*Prix donné à titre indicatif

N° de stock RS:
455-023
Référence fabricant:
23034EAW33
Fabricant:
NTN
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Marque

NTN

Product Type

Spherical Roller Bearing

Inside Diameter

170 mm

Race Width

67mm

Cage Material

Steel

Roller Material

Steel

Series

230

Internal Clearance

CN

Static Load Rating

1240kN

Bearing Material

Through Hardened Steel

Maximum Speed - Oil

2700rpm

Standards/Approvals

RoHS Certificate of Compliance

Limiting Speed

2700rpm

Dynamic Load Rating

914kN

Maximum Speed - Grease

2200rpm

Outside Diameter

260 mm

Race Type

Spherical

Pays d'origine :
IT
The NTN Spherical Roller Bearing is designed for high performance, offering reliability in demanding applications. With its robust construction, it excels in both dynamic and static load conditions, making it a preferred choice for machinery requiring precision and durability. The bearing features an internal diameter of 170 mm and an external diameter of 260 mm, ensuring compatibility with a wide range of equipment. It is engineered to withstand extreme temperatures, with operational limits ranging from -40 °C to 200 °C. Its innovative design includes multiple lubrication holes and a heightened fatigue limit load, thus reducing maintenance frequency and extending service life. This product stands apart by offering a harmonious blend of efficiency and strength, ensuring seamless operation even under load fluctuations.

Designed for high performance in demanding environments

Robust construction enhances durability and longevity

Excel in both dynamic and static load conditions

Optimised for a wide range of machinery applications

Minimises maintenance requirements with effective lubrication holes

Durable material selection increases fatigue resistance

Operates efficiently across a broad temperature range

Provides exceptional reliability and stability under load variations

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