SKF NKI 25/20 TN 25mm I.D Needle Roller Bearing, 38mm O.D

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£37.29

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£44.75

(inc. VAT)

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RS Stock No.:
209-2397
Mfr. Part No.:
NKI 25/20 TN
Brand:
SKF
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Brand

SKF

Inside Diameter

25mm

Outside Diameter

38mm

Roller Bearing Type

Needle

Race Width

20mm

Material

Steel

SKF Needle Roller Bearing, 25mm Inside Diameter, 20mm Race Width - NKI 25/20 TN


This needle roller bearing is a high-performance component designed for various mechanical applications. With an inside diameter of 25mm and an outside diameter of 38mm, it is specifically engineered to accommodate significant loads while ensuring minimal friction. This product is constructed from durable steel, ensuring longevity and reliability in demanding environments.

Features & Benefits


• High static load rating of 42.5kN ensures durability
• Dynamic load rating of 28kN supports heavier machinery
• Designed for high-speed operation, with a reference speed of 14,000 rpm
• Non-metallic cage material reduces friction and wear
• Fatigue limit load of 5.2kN provides stability under varying conditions

Applications


• Ideal for use in automation machinery
• Suitable for requiring high-speed rotation
• Can be used in precision engineering equipment
• Effective in electrical and mechanical system assemblies
• Utilised in a variety of industrial requiring robust support

What are the temperature limits for this product during operation?


The operating temperature for optimal performance is typically defined within specified ranges

however, the exact limits should be determined based on the specific conditions and environments in which it will be used, ensuring efficiency and safety in various situations.

How does the design influence load distribution?


The unique single-row design allows for optimal load distribution across the bearing, effectively minimising stress points and enhancing performance during high loads, particularly in dynamic applications.

What maintenance practices are recommended for longevity?


Regular inspections for wear and proper lubrication are essential for maintaining functionality and extending the lifespan of the bearing. Implementing a predictive maintenance strategy can minimise unexpected failures and keep machinery operating smoothly.

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