INA IR Inner Ring Cylindrical, IR12X16X13-XL

Subtotal (1 pack of 5 units)*

£38.77

(exc. VAT)

£46.525

(inc. VAT)

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RS Stock No.:
260-0029
Mfr. Part No.:
IR12X16X13-XL
Brand:
INA
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Brand

INA

Type

Inner Ring Cylindrical

Inner Diameter

12mm

Outer Diameter

16mm

Dimensions

12 x 16 x 13mm

Series

IR

Schaeffler Series IR Roller Bearing Inner Ring, 12mm Inner Diameter, 16mm Outer Diameter - IR12X16X13-XL


This roller bearing inner ring is a cylindrical component designed for precision engineering applications. With an inner diameter of 12mm and an outer diameter of 16mm, it is specifically engineered for effective load distribution and smooth inner raceway performance. This component is ideal for use in high-performance machinery and automation systems. The dimensions of this inner ring are 12 x 16 x 13 mm.

Features & Benefits


• Crafted for precise operational tolerances to enhance performance
• Optimised for minimal friction with smooth internal surfaces
• Lightweight design at only 8.9g for easy installation
• Manufactured to rigorous standards for consistent quality
• Suitable for a variety of mechanical engineering components
• Facilitates longevity in miniature roller bearing usage

Applications


• Utilised in automation systems for consistent motion
• Can be used in electrical devices with rotating parts
• Implemented in robotics for streamlined operations
• Fits within compact machinery designs needing precision bearings

What tolerance levels does this component offer for precise fit?


The inner ring features an upper tolerance of -0.004mm and a lower tolerance of -0.018mm, ensuring accurate fitting and reliable performance in various mechanical systems.

How does this inner ring improve the durability of machinery?


Its precision engineering reduces wear over time by maintaining a smooth operating surface and optimising load distribution, which minimises the risks of potential failure.

What is the significance of the minimum chamfer dimension in design?


The minimum chamfer dimension of 0.3mm helps facilitate easy assembly by providing a smoother transition for adjoining components, thereby improving the overall efficiency of the mechanism.

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