Claims
- 1. A retaining ring for use inside a generally cylindrical cavity having at least one retaining feature, the at least one retaining feature having a first diameter, the retaining ring comprising:
a ring body having an outer body diameter and a slot therethrough, the slot being defined by a first ring end and a second ring end, and configured such that the outer body diameter exceeds the first diameter of the at least one retaining feature when the ring body is deflected such that the first ring end is abutted against the second ring end.
- 2. The retaining ring of claim 1, wherein the first ring end and the second ring end each include a generally radial flat surface.
- 3. The retaining ring of claim 1, wherein the ring body includes an inner body diameter, an inner ring surface, and an outer ring surface, the inner ring surface being disposed along a first circumference at the inner body diameter, and the outer ring surface being disposed along a second circumference at the outer body diameter.
- 4. The retaining ring of claim 3, wherein the first ring end and the second ring end each have a chamfer adjacent the outer ring surface.
- 5. The retaining ring of claim 1, wherein the ring body includes a generally uniform rectangular radial cross section.
- 6. A retaining ring for use inside a generally cylindrical cavity having at least one retaining feature, the at least one retaining feature having a first diameter, the retaining ring comprising:
a one-piece radially elastic ring body including a first annular surface defining an inside body diameter and a second annular surface defining an outside body diameter, the ring body having a circumferential discontinuity therethrough, the discontinuity being defined by a first ring end disposed at a predetermined distance from a second ring end when the ring body is in free form, the predetermined distance being set such that the outside body diameter exceeds the first diameter of the at least one retaining feature when the ring body is loaded such that the first ring end contacts the second ring end.
- 7. The retaining ring of claim 6, wherein the first ring end and the second ring end each include a generally radial flat surface.
- 8. The retaining ring of claim 6, wherein the first ring end and the second ring end each have a chamfer adjacent the second annular surface.
- 9. The retaining ring of claim 6, wherein the ring body includes a generally uniform rectangular radial cross section.
- 10. A retaining ring for use inside a generally cylindrical cavity having a plurality of retention tabs circumferentially disposed within the cavity and defining a first tab diameter, the retaining ring comprising:
a ring body having an outer body diameter and a slot therethrough, the slot being defined by first and second ring ends and configured such that the outer body diameter exceeds the first tab diameter when the ring body is deflected such that the first ring end is abutted against the second ring end.
- 11. The retaining ring of claim 10, wherein the first ring end and the second ring end each include a radially oriented planar surface.
- 12. The retaining ring of claim 10, wherein the ring body includes an inner body diameter, an inner ring surface, and an outer ring surface, the inner ring surface being disposed along a first circumference at the inner body diameter, and the outer ring surface being disposed along a second circumference at the outer body diameter.
- 13. The retaining ring of claim 12, wherein the first ring end and the second ring end each have a chamfer adjacent the outer ring surface.
- 14. The retaining ring of claim 10, wherein the ring body includes a generally uniform rectangular radial cross section.
- 15. A method of installing a retaining ring inside a generally cylindrical cavity having a cavity opening and at least one retaining feature, the at least one retaining feature having a first diameter, the method comprising:
choosing a snap ring from an inventory of differently sized snap rings, the chosen snap ring having a minimum outer body diameter exceeding the first diameter of the at least one retaining feature; inserting a first ring end into the cavity through the cavity opening; inserting a second ring end into the cavity through the cavity opening such that the snap ring forms a helical coil inside the cavity; and displacing the snap ring within the cavity until the snap ring abuts the at least one retaining feature.
- 16. The method of claim 15, wherein the at least one retaining feature comprises a plurality of retention tabs circumferentially disposed within the cavity, each retention tab including a retaining surface, the retention tabs being arranged with circumferential spaces defining tab interstices between them.
- 17. The method of claim 16, wherein displacing the snap ring within the cavity includes rotating the snap ring until the first and second ring ends each traverse a retention tab interstice, and further includes disposing the snap ring adjacent to the retaining surfaces of the retention tabs.
- 18. The method of claim 15, wherein the first and the second ring ends each include a generally flat radial surface.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. provisional application Serial No. 60/384,051, filed May 29, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60384051 |
May 2002 |
US |