NTN 4T-594/592A Taper Roller 152.4 mm ID Taper Roller Bearing, 95 mm OD

Sous-total (1 unité)*

130,87 €

(TVA exclue)

158,35 €

(TVA incluse)

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  • Expédition à partir du 17 avril 2026
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Unité
Prix par unité
1 +130,87 €

*Prix donné à titre indicatif

N° de stock RS:
454-142
Référence fabricant:
4T-594/592A
Fabricant:
NTN
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Marque

NTN

Product Type

Taper Roller Bearing

Inside Diameter

152.4 mm

Bore Type

Round

Cage Material

Pressed Steel

Roller Material

Case Hardening Steel

Static Load Rating

279kN

Bearing Material

Case Hardening Steel

Cup Width

30.162mm

Cone Width

36.322mm

Number of Rows

1

Outside Diameter

95 mm

Series

4T-594/592A

Bearing Dynamic Load Rating

199 KN

Maximum Speed - Grease

2300rpm

Limiting Speed

2300, 3100rpm

Standards/Approvals

ABMA, ISO 355, RoHS, JIS B 1512

Maximum Speed - Oil

3100rpm

Bearing Type

Taper Roller

Race Type

Tapered

Pays d'origine :
JP
The NTN Single row tapered roller bearing embodies precision engineering, designed for optimal performance and longevity. With a robust internal and external diameter, it allows for efficient load distribution, ensuring smooth operation even under demanding conditions. The unique pressed steel cage construction enhances strength while reducing friction, making it an ideal choice for various applications. Its comprehensive operational temperature range contributes to its adaptability in different environments, while the carefully calculated load ratings demonstrate its capacity to withstand significant stress. Whether used in heavy machinery or automotive applications, this product guarantees reliability and efficiency.

Constructed with a pressed steel cage for enhanced durability and performance

Optimised for increased load distribution efficiency, ensuring smoother operation

Designed to function effectively across a wide range of temperatures

Exhibits impressive resistance to wear, extending the lifespan of machinery

Features a high static load rating suitable for various industrial applications

Facilitates lower friction, contributing to improved energy efficiency

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