NTN 29328E Round 140 mm I.D Spherical Roller Bearing, 240 mm O.D

Subtotal (1 unit)*

£1,052.61

(exc. VAT)

£1,263.13

(inc. VAT)

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1 +£1,052.61

*price indicative

RS Stock No.:
455-045
Mfr. Part No.:
29328E
Brand:
NTN
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Brand

NTN

Product Type

Spherical Roller Bearing

Inside Diameter

140 mm

Race Width

30mm

Bore Type

Round

Roller Material

100Crmn6

Cage Material

Sheet Metal

Outside Diameter

240 mm

Dynamic Load Rating

857kN

End Type

Open

Standards/Approvals

RoHS

Internal Clearance

CN

Maximum Speed - Oil

1500rpm

Static Load Rating

2920kN

Number of Rows

1

Bearing Material

Through Hardened Steel

Limiting Speed

2500rpm

Series

29328E

COO (Country of Origin):
CZ
The NTN Thrust Spherical Roller Bearing is an engineering marvel designed for superior performance in demanding environments. Engineered for reliability and durability, this bearing is ideal for applications requiring precise axial load handling. It features a robust internal and housing washer design, ensuring efficient load distribution while minimising wear and tear. The excellent lubrication capabilities of this bearing make it a go-to choice for operations under high-speed conditions. Additionally, its exceptional temperature tolerance allows it to perform reliably in extreme scenarios, establishing it as a leading choice for heavy machinery and other industrial applications. With its streamlined design and advanced material composition, this product guarantees longevity and reduced maintenance intervals, thus promoting operational efficiency.

Designed to handle high axial loads efficiently

Excellent for high-speed applications, enhancing performance

Constructed to endure extreme temperatures, ensuring reliability

Optimised for minimal friction, contributing to energy efficiency

Advanced materials reduce wear, extending service life

Features a compact design for easier installation in constrained spaces

Oil lubrication limit speed ensures optimal operation under dynamic conditions

Dynamic axial load rating enhances performance reliability in heavy loads

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