Cam clutch
US-2022056963-A1 · Feb 24, 2022 · US
US11913503B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11913503-B2 |
| Application number | US-202318135998-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 18, 2023 |
| Priority date | May 10, 2022 |
| Publication date | Feb 27, 2024 |
| Grant date | Feb 27, 2024 |
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To provide a simple-structured cam clutch that does not require precise control and is operable with a smaller drive force and less prone to damage on cam surfaces or inner and outer raceways. The cam clutch includes a plurality of cams circumferentially arranged between an inner race and an outer race and supported by a cage member, and a selector capable of changing an orientation of the cams. The selector includes a driven part allowing a rotation angle thereof to be controlled relative to the inner race or outer race to which the cage member is fixedly attached, and a selector body circumferentially displaceable relative to the driven part in a resilient manner by a spring-loaded mechanism. The selector body includes a cam orientation control protrusion capable of changing the orientation of the cams by making contact with the cams.
Opening claim text (preview).
What is claimed is: 1. A cam clutch comprising: an inner race and an outer race that are coaxial and rotatable relative to each other; a plurality of cams circumferentially arranged between the inner race and the outer race; a cage member fixed to the inner race or the outer race not to rotate and supporting the plurality of cams; and a selector capable of changing an orientation of the cams, the selector including a driven part allowing a rotation angle thereof to be controlled relative to the inner race or the outer race to which the cage member is fixedly attached, and a selector body circumferentially displaceable relative to the driven part in a resilient manner by a spring-loaded mechanism, the selector body including a cam orientation control protrusion capable of changing the orientation of the cams by making contact with the cams. 2. The cam clutch according to claim 1 , wherein the spring-loaded mechanism includes a resilient component accommodating portion provided to one of the selector body and the driven part, and a compression pin provided to an other one of the selector body and the driven part and inserted into the resilient component accommodating portion. 3. The cam clutch according to claim 1 , wherein one of the selector body and the driven part has a circumferentially elongated hole, and an other one of the selector body and the driven part has a positioning pin that fits into the elongated hole to restrict a displacement angle between the selector body and the driven part. 4. The cam clutch according to claim 1 , wherein the cam orientation control protrusion is disposed to be able to make contact with the cams at a different axial position from that of a point of contact between a cam surface of the cams and the inner race or the outer race. 5. The cam clutch according to claim 1 , comprising a plurality of sets of the inner race, outer race, cams, and cage member along a direction of rotation axis with the selector between the sets, the selector having one selector body each for each set of the cams on both sides in the direction of rotation axis.
between two cylindrical surfaces · CPC title
each member comprising at least two elements at different radii · CPC title
the intermediate coupling members wedging by pivoting or rocking · CPC title
the intermediate members being of only one size and wedging by a movement not having an axial component, between inner and outer races, one of which is cylindrical · CPC title
the intermediate members wedging by movement having an axial component · CPC title
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