SKF 32207J2/Q 35mm I.D Tapered Roller Bearing Tapered Roller Bearing, 72mm O.D

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RS Stock No.:
506-781
Mfr. Part No.:
32207J2/Q
Brand:
SKF
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Brand

SKF

Inside Diameter

35mm

Outside Diameter

72mm

Roller Bearing Type

Tapered Roller Bearing

Race Width

24.25mm

Bore Type

Parallel

Material

Metal

Static Load Rating

78kN

Cage Material

Sheet Metal

Number of Rows

1

Dynamic Load Rating

66kN

End Type

Open

Limiting Speed

9500rpm

Reference Speed

8000rpm

Fatigue Limit Load

8.5kN

RoHS Status: Exempt

COO (Country of Origin):
CN

SKF Tapered Roller Bearing, 35mm Inside Diameter, 72mm Outside Diameter - 32207J2/Q


This tapered roller bearing is engineered for robust performance in demanding applications. Designed with a cylindrical bore, it has an inside diameter of 35mm and an outside diameter of 72mm. This bearing is essential for users requiring high load capacity, making it suitable for various mechanical and industrial applications.

Features & Benefits


• Utilises a metal construction for durability and strength
• Designed to support high loads with a static rating of 78 kN
• Enhanced performance with a dynamic load rating of 66 kN
• Achieves a maximum reference speed of 8000 rpm
• Fatigue limit load is rated at 8.5 kN for reliability

Applications


• Used in heavy machinery for enhanced performance
• Suitable for automation systems requiring high load capacity
• Ideal for electrical equipment that demands sturdy support
• Effective in various mechanical assemblies needing tapered bearings

What are the benefits of using a tapered roller design in industrial applications?


The tapered roller design allows for higher load capacity and improved stress distribution, making it ideal for applications involving heavy loads and varying directional forces.

How does the materials used influence the bearing's performance?


The metal construction ensures robust resistance against wear and deformation, thus maintaining performance under high load conditions and enhancing overall longevity.

What are the implications of the open design for maintenance?


An open design facilitates easier access for lubrication and inspection, contributing to reduced downtime and maintenance costs, especially in high-use environments.

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