Retaining Rings & Clips
External, internal, E-clips, spiral and push-on retainers.
Also searched as: snap ringscirclipse-clipsexternal retaining ringc-clips
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Internal Retaining Ring
Bore Diameter: 2"
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65mn Steel M1408/AV Reverse External Retaining Ring Circlips
Finish: BlackSize: M8-M100Strength Grade: 8.8Thickness: 0.7mm-3mm
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Black Oxide Carbon Steel C Circlip DIN Standard External Retaining Ring with Spherical Washer Type C
Compatible Screw Size: M3Standard: DINType: C
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Black Spring Steel DIN 6799 Rotor Clip E-Type Retaining Ring
Inner Diameter: 1.2mm-30mmStandard: DIN 6799Surface Treatment: Black Oxide
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Black Spring Steel E Type Retaining Ring
Inner Diameter: 3mm-40mmOuter Diameter: 3.9mm-43.8mmSurface Treatment: Black Oxide
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DIN 472 B 65mn Black Spring Steel Internal Circlips Rings
Standard: DIN 472 BType: Internal
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DIN471 12mm 41mm 22mm 50mm External Circlips For Shaft
Size: 12mm, 41mm, 22mm, 50mmStandard: DIN471Type: External
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DIN472 Internal Circlips Retaining Rings for Bores
Standard: DIN472Type: Internal
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External Retaining Rings
Diameter: 1.5mm-24mm
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External Retaining Rings for Shaft
Size Range: 15mm-110mmStandard: GB894 & DIN471
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External Retaining Rings for Shafts
Application: Heavy Industry, General IndustryFinish: Black, ZincStyle: Split, Wedge
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GB894 45mm 47mm 48mm Zinc Plated Carbon Steel External Circlips
Size: 45mm, 47mm, 48mmStandard: GB894Type: External
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GB894 6mm-19mm Split Zinc Plated Carbon Steel Flat External Circlips
Size Range: 6mm-19mmStandard: GB894Style: SplitType: External
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About retaining rings & clips
Retaining rings and clips are critical components for securing assemblies on shafts or within bores, preventing axial movement. They are broadly categorized by their mounting orientation: internal retaining rings fit into grooves within bores, and external retaining rings fit into grooves on shafts. Common types include stamped circlips (often conforming to DIN 471 for external and DIN 472 for internal applications), spiral retaining rings (multi-turn, groove-less designs for lighter loads), E-clips (E-shaped, radially installed for smaller shafts), and push-on retainers (friction-fit, groove-less, for low-load, non-precision applications). Selection criteria typically involve the shaft or bore diameter, the groove dimensions (diameter, width, depth), and the thrust load the ring must withstand. Material considerations include carbon spring steel (standard for general industrial use), stainless steel (for corrosion resistance, often 302 or 316), and beryllium copper (for non-magnetic or high-conductivity applications). Finishes such as phosphate and oil, zinc plating, or black oxide provide enhanced corrosion protection. Standardized series like ANSI, DIN, and JIS define dimensional characteristics and performance ratings for various ring types.
How to choose
Selecting the correct retaining ring begins with identifying the application type: internal (bore) or external (shaft). Next, determine the critical dimensions: the shaft or bore diameter, and if grooved, the groove diameter and width. This narrows down the primary ring type (e.g., internal circlip, external circlip, E-clip). The third step is to calculate the maximum thrust load the ring must withstand, as this dictates the required shear strength and groove deformation resistance, influencing material and cross-section. Finally, consider the environmental conditions, such as exposure to corrosives or extreme temperatures, to specify the appropriate material (e.g., carbon steel, stainless steel) and finish (e.g., zinc plating, black oxide) for durability and performance.