INA Bearing Insert 35 mm ID 80.2 mm OD RABRB35/80-XL-FA106

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£59.58

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£71.50

(inc. VAT)

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RS Stock No.:
137-1522
Mfr. Part No.:
RABRB35/80-XL-FA106
Brand:
INA
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Brand

INA

Inside Diameter

35 mm

Product Type

Bearing Insert

Outside Diameter

80.2 mm

Material

Steel

Static Load Rating

15300N

Dynamic Load Rating

27500N

End Type

Sealed

Standards/Approvals

No

Series

RABR

Bore Type

Parallel

SCHAEFFLER Bearing Inserts, 35mm Inside Diameter, 80.2mm Outside Diameter - RABRB35/80-XL-FA106


This bearing insert is designed for a wide range of applications in the automation, electrical, and mechanical industries. The product features an inner diameter of 35mm and an outer diameter of 80.2mm, constructed from Durable steel. With strong load ratings, the bearing insert ensures reliable performance in demanding environments.

Features & Benefits


• High static load rating of 15300 N enhances durability
• Dynamic load rating of 25500 N supports reliable movement
• Steel material provides robust resistance to mechanical stress
• Optimised dimensions facilitate seamless integration into systems
• Designed for high performance applications ensuring efficiency

Applications


• Used in machinery for reliable rotational performance
• Suitable for automation systems requiring precision movement
• Employed in electrical equipment needing robust support
• Integrated into mechanical assemblies for efficient functioning

What are the advantages of using steel in the design of these inserts?


The use of steel in these inserts provides significant strength and durability, allowing them to withstand high loads and provide stable performance in challenging conditions. This material choice enhances the longevity of the inserts and minimises the need for frequent replacements.

In what environments can these inserts be utilised?


These inserts can be utilised in industrial environments where mechanical components are subject to frequent movement or heavy loads, including manufacturing plants and assembly lines, ensuring they maintain performance under pressure.

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