4 Hole Flange Bearing Unit, UCF 212-36, 57.15mm ID

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RS Stock No.:
214-6384
Mfr. Part No.:
UCF 212-36
Brand:
SKF
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Brand

SKF

Inside Diameter

57.15mm

Bearing Unit Type

Flange Bearing Unit

Number of Mount Holes

4

Material

Cast Iron

Length

175mm

Width

68.7mm

Depth

143mm

COO (Country of Origin):
CN

SKF Flanged Bearing Unit, 57.15mm Inside Diameter, Cast Iron - UCF 212-36


This flanged bearing unit is designed for robust applications in material handling environments. The sturdy cast iron construction ensures longevity and performance under various operational conditions. With an inside diameter of 57.15mm, this unit is engineered to support heavy loads effectively, making it a crucial component for automation and machinery.

Features & Benefits


• Cast iron housing provides enhanced durability and stability
• Four mounting holes ensure secure installation and alignment
• High-performance dynamics with a load rating of 52.7kN
• Limiting speed of 2700r/min for efficient operation

Applications


• Used for material handling equipment
• Ideal for operational machinery in industrial settings
• Suitable for automated systems requiring reliable motion
• Utilised in rigorous manufacturing environments
• Compatible with various heavy-duty machinery configurations

How does the sealing solution contribute to the unit's reliability?


The standard seals with additional flingers effectively prevent dirt and contaminants from penetrating, ensuring the integrity and longevity of the bearing unit even in challenging environments.

What factors influence the load capacity of this bearing unit?


The basic dynamic load rating is influenced by the material construction, design specifications, and mounting configuration, allowing it to support a maximum load of 52.7kN while maintaining stable operation.

How can I ensure proper installation of this bearing unit?


Accurate alignment during installation is key

using the four mounting holes, the unit should be secured tightly according to the recommended torque specifications to prevent misalignment and potential premature failure.

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