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A circlip (also known as a snap ring or retaining ring) is one of the most fundamental fastening components in mechanical engineering. Despite its small size, it performs a critical function: preventing axial movement of components on a shaft or within a bore.

How Does a Circlip Work?

A circlip is an open-ended, spring-steel ring that fits into a precisely machined groove on either a shaft or inside a bore. Once seated, it acts as a mechanical shoulder, preventing the assembly from sliding axially. The ring's inherent spring tension holds it securely in the groove without any additional fastening method.

This elegantly simple mechanism is what makes circlips invaluable in high-volume manufacturing: they are fast to install, require no threads, and provide reliable retention with minimal material and cost.

Key Principle: A circlip does not carry rotational loads. It is purely an axial retention device. For torque transmission, use keys, splines, or interference fits alongside circlips.

Internal vs External Circlips

External Circlips (Shaft Circlips)

External circlips fit into a groove on the outside of a shaft. They retain components such as bearings, gears, or pulleys from sliding off. The ring is compressed slightly to snap into the groove. Standardised under DIN 471 and IS 3075.

Internal Circlips (Bore Circlips)

Internal circlips fit into a groove on the inside of a bore or housing. They retain components like bearings or bushings from being pushed through the bore. The ring is expanded outward to seat into the groove. Standardised under DIN 472 and IS 3074.

Material Grades

Selection Criteria

Installation Best Practices

Common Applications

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