Rotation transmission device
US-2016348740-A1 · Dec 1, 2016 · US
US10087997B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10087997-B2 |
| Application number | US-201615194852-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 28, 2016 |
| Priority date | Jul 6, 2015 |
| Publication date | Oct 2, 2018 |
| Grant date | Oct 2, 2018 |
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Official abstract text for this publication.
A clutch transmits rotation drive force of a rotation shaft to a driven shaft and restricts transmission of a rotation force from the driven shaft to the rotation shaft. The clutch includes a grease accommodation portion and a rotation member. Grease is arranged in the grease accommodation portion. The grease accommodation portion opens in an axial direction of the rotation shaft. The rotation member is at least partially inserted into the grease accommodation portion and rotated with the rotation shaft about a center axis of the rotation shaft. The rotation member includes a leakage restriction wall that is located toward a radially outer side of the rotation shaft from the opening of the grease accommodation portion and extended in the axial direction of the rotation shaft. The leakage restriction wall is located toward an outer side of the grease accommodation portion from the opening of the grease accommodation portion.
Opening claim text (preview).
The invention claimed is: 1. A clutch that transmits rotation drive force of a rotation shaft to a driven shaft and restricts transmission of a rotation force from the driven shaft to the rotation shaft, the clutch comprising: a grease accommodation portion in which grease is arranged, wherein the grease accommodation portion includes an opening that opens in an axial direction of the rotation shaft; and a rotation member that is at least partially inserted into the grease accommodation portion and rotated with the rotation shaft about a center axis of the rotation shaft, wherein the rotation member includes a leakage restriction wall that is located toward a radially outer side of the rotation shaft from the opening of the grease accommodation portion and extended in the axial direction of the rotation shaft, and the leakage restriction wall is located toward an outer side of the grease accommodation portion from the opening of the grease accommodation portion, the grease accommodation portion includes a tubular inner circumferential surface on which the grease is arranged, wherein the tubular inner circumferential surface is directed toward a radially inner side of the rotation shaft, the rotation member includes a first rotation member that rotates integrally with the rotation shaft and a second rotation member to which rotation drive force is transmitted from the first rotation member, the leakage restriction wall is arranged on the first rotation member and the second rotation member, the first rotation member includes a rotation transmission unit extended in the axial direction of the rotation shaft and inserted into the grease accommodation portion to transmit rotation drive force to the second rotation member, the rotation transmission unit includes a radially outer side surface that opposes the inner circumferential surface of the grease accommodation portion in the radial direction of the rotation shaft, and the radially outer side surface of the rotation transmission unit includes an accommodation groove that accommodates the grease. 2. The clutch according to claim 1 , wherein the rotation member includes an axially continuous portion located between the opening of the grease accommodation portion and the leakage restriction wall, and the axially continuous portion is continuous in the axial direction with the opening of the grease accommodation portion and the leakage restriction wall. 3. The clutch according to claim 1 , wherein rotation of the rotation member is stopped when the rotation shaft is stopped. 4. The clutch according to claim 3 , further comprising a tubular clutch housing that includes the grease accommodation portion, wherein the rotation member includes an annular ring that abuts against, from the axial direction, a portion of the clutch housing located at a radially outer side of the opening of the grease accommodation portion, and the leakage restriction wall is located on the ring and projected away from the clutch housing in the axial direction of the rotation shaft. 5. The clutch according to claim 1 , wherein the rotation member includes a first rotation member that rotates integrally with the rotation shaft and a second rotation member to which rotation drive force is transmitted from the first rotation member, the leakage restriction wall includes a first leakage restriction wall and a second leakage restriction wall, the first rotation member includes the first leakage restriction wall, the second rotation member includes the second leakage restriction wall, the second leakage restriction wall and the first leakage restriction wall project in opposite directions, and the second leakage restriction wall is arranged to overlap the first leakage restriction wall in the radial direction of the rotation shaft. 6. The clutch according to claim 1 , wherein the accommodation groove includes two inner side surfaces located at opposite sides of the rotation shaft in a circumferential direction, a bottom, and an opening, at least one of the two inner side surfaces includes an adjustment surface inclined with respect to the radial direction of the rotation shaft, and the adjustment surface extends to change a width of the accommodation groove in the circumferential direction of the rotation shaft from the bottom toward the opening. 7. The clutch according to claim 1 , wherein the accommodation groove extends to a distal end of the rotation transmission unit in the axial direction of the rotation shaft, and an end of the accommodation groove located at a distal side of the rotation transmission unit increases in thickness toward the distal end of the rotation transmission unit. 8. The clutch according to claim 1 , wherein the leakage restriction wall is annular and continuous in a circumferential direction. 9. A motor comprising: a motor unit including a rotation shaft that is driven and rotated; an output unit including a driven shaft to which rotation drive force of the rotation shaft is transmitted, wherein the output unit externally outputs the rotation drive force transmitted to the driven shaft; and a coupling portion including a grease accommodation portion and a rotation member, wherein grease is arranged in the grease accommodation portion, the grease accommodation portion includes an opening that opens in an axial direction of the rotation shaft, the rotation member is at least partially inserted into the grease accommodation portion and rotated with the rotation shaft about a center axis of the rotation shaft and the coupling portion couples the rotation shaft to the driven shaft to transmit the rotation drive force of the rotation shaft to the driven shaft, wherein the rotation member includes a leakage restriction wall that is located toward a radially outer side of the rotation shaft from the opening of the grease accommodation portion and extended in the axial direction of the rotation shaft, and the leakage restriction wall is located toward an outer side of the grease accommodation portion from the opening of the grease accommodation portion, and the coupling portion and the leakage restriction wall form a clearance, which has an L-shaped cross-section that is orthogonal to a circumferential direction of the rotation shaft. 10. The motor according to claim 9 , wherein the rotation member includes an axially continuous portion located between the opening of the grease accommodation portion and the leakage restriction wall, and the axially continuous portion is continuous in the axial direction with the opening of the grease accommodation portion and the leakage restriction wall. 11. The motor according to claim 9 , wherein the coupling portion transmits the rotation drive force of the rotation shaft to the driven shaft and restricts transmission of a rotation force from the driven shaft to the rotation shaft, and rotation of the rotation member is stopped when the rotation shaft is stopped. 12. The motor according to claim 11 , wherein the clutch includes a tubular clutch housing that includes the grease accommodation portion, the rotation member includes an annular ring that abuts against, from the axial direction, a portion of the clutch housing located at a radially outer side of the opening of the grease accommodation portion, and the leakage restriction wall is located on the ring and projected away from the clutch housing in the axial direction of the rotation shaft. 13. The motor according to claim 9 , wherein the rotation member includes a first rotation member that rotates integrally with the rotation shaft and a second rotation member to which rotation d
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