Claims
- 1. A constant-mesh transmission comprising:
a first gear provided for a first rotary shaft so as to rotate integrally with the first rotary shaft; a second gear which meshes with the first gear and is rotatably provided for a second rotary shaft; and a synchronizing mechanism, said synchronizing mechanism having
a shifter provided for said second rotary shaft so as to rotate integrally with said second rotary shaft and to be movable in the axial direction, a ring-shaped recess formed in said second gear, and a synchronizer ring disposed in the recess so as to be rotatable relative to said second gear and pressed by said shifter at the time of changing speed to move in said axial direction so as to come into frictional engagement with said second gear, thereby achieving synchronization between said shifter and said second gear, wherein a first connection spline formed in a circumferential wall face of said recess and a first synchronization spline formed in a circumferential face of said synchronizer ring occupy a position where they at least partly overlap with each other in said axial direction, a second connection spline which meshes with said first connection spline and a second synchronization spline which presses said first synchronization spline in said axial direction to make said synchronizer ring and said second gear come into frictional engagement with each other, and can mesh with said first synchronization spline are formed in said shifter, and at the time of changing speed, said first and second synchronization splines mesh with each other and, after that, said first and second connection splines mesh with each other.
- 2. The constant-mesh transmission according to claim 1, further comprising:
a ring-side tapered portion formed on the side opposite to said shifter in said axial direction of said first synchronization spline in the circumferential face of said synchronizer ring; and a gear-side tapered portion with which said ring-side tapered portion comes into frictional engagement at the time of changing speed formed in a circumferential wall face of said recess.
- 3. The constant-mesh transmission according to claim 1, wherein the synchronizing mechanism further comprises:
an index washer as a synchronization positioning member; and a synchronizer spring as an intermediate member for transmitting a press force in the axial direction of the second gear to the synchronizer ring.
- 4. The constant-mesh transmission according to claim 1, wherein a plurality of notches and holding portions are provided on an inner circumferential face of the synchronizer ring.
- 5. The constant-mesh transmission according to claim 1, wherein the first and second connection splines are formed in a whole circumference of the first and second gears.
- 6. The constant-mesh transmission according to claim 1, wherein the first and second connection splines are formed on only part of a whole circumference of the first and second gears.
- 7. The constant-mesh transmission according to claim 1, wherein the first and second synchronization splines are provided on the inside in the radial direction of the first and second connection splines.
- 8. The constant-mesh transmission according to claim 1, wherein the first and second synchronization splines are provided on the outer side in the radial direction of the first and second connection splines.
- 9. The constant-mesh transmission according to claim 2, wherein said ring-side tapered portion is formed in an outer circumferential face of the synchronizer ring.
- 10. The constant-mesh transmission according to claim 2, wherein said ring-side tapered portion is formed on an inner circumferential face of the synchronizer ring.
- 11. The constant-mesh transmission according to claim 1, wherein a tip of the first synchronization spline is positioned closer to the second gear in an axial direction than a tip of the first connection spline at the speed change start position.
- 12. The constant-mesh transmission according to claim 1, wherein a tip of the first synchronization spline occupies the same position in the axial direction as a tip of the first connection spline at the speed change start position.
- 13. A constant-mesh transmission comprising:
a first gear provided for a first rotary shaft so as to rotate integrally with the first rotary shaft; a second gear which meshes with the first gear and is rotatably provided for a second rotary shaft; and a synchronizing mechanism, said synchronizing mechanism having
a shifter provided for said second rotary shaft so as to rotate integrally with said second rotary shaft and to be movable in the axial direction, a ring-shaped recess formed in said second gear, and a synchronizer ring disposed in the recess so as to be rotatable relative to said second gear and pressed by said shifter at the time of changing speed to move in said axial direction so as to come into frictional engagement with said second gear, thereby achieving synchronization between said shifter and said second gear, an index washer as a synchronization positioning member, and a synchronizer spring as an intermediate member for transmitting a press force in the axial direction of the second gear to the synchronizer ring, wherein a first connection spline formed in a circumferential wall face of said recess and a first synchronization spline formed in a circumferential face of said synchronizer ring occupy a position where they at least partly overlap with each other in said axial direction, a second connection spline which meshes with said first connection spline and a second synchronization spline which presses said first synchronization spline in said axial direction to make said synchronizer ring and said second gear come into frictional engagement with each other, and can mesh with said first synchronization spline are formed in said shifter, and at the time of changing speed, said first and second synchronization splines mesh with each other and, after that, said first and second connection splines mesh with each other.
- 14. The constant-mesh transmission according to claim 13, further comprising:
a ring-side tapered portion formed on the side opposite to said shifter in said axial direction of said first synchronization spline in the circumferential face of said synchronizer ring; and a gear-side tapered portion with which said ring-side tapered portion comes into frictional engagement at the time of changing speed formed in a circumferential wall face of said recess.
- 15. The constant-mesh transmission according to claim 13, wherein the first and second synchronization splines are provided on the inside in the radial direction of the first and second connection splines.
- 16. The constant-mesh transmission according to claim 13, wherein the first and second synchronization connection splines are provided on the outer side in the radial direction of the first and second connection splines.
- 17. The constant-mesh transmission according to claim 14, wherein said ring-side tapered portion is formed in an outer circumferential face of the synchronizer ring.
- 18. The constant-mesh transmission according to claim 14, wherein said ring-side tapered portion is formed on an inner circumferential face of the synchronizer ring.
- 19. The constant-mesh transmission according to claim 13, wherein a tip of the first synchronization spline is positioned closer to the second gear in an axial direction than a tip of the first connection spline at the speed change start position.
- 20. The constant-mesh transmission according to claim 13, wherein a tip of the first synchronization spline occupies the same position in the axial direction as the tip of a first connection spline at the speed change start position.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2001-230979 |
Jul 2001 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] The present application claims priority under 35 U.S.C. §119 to Japanese application No. 2001-230979, filed Jul. 31, 2001, the entire contents of which by incorporated by reference.