Transmission device
US-11047467-B2 · Jun 29, 2021 · US
US11852233B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11852233-B2 |
| Application number | US-201917640129-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 11, 2019 |
| Priority date | Sep 11, 2019 |
| Publication date | Dec 26, 2023 |
| Grant date | Dec 26, 2023 |
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Official abstract text for this publication.
A transmission device includes a planetary reduction gear and a differential device, wherein a carrier of the reduction gear is dividedly formed from a first carrier portion that supports one end side of a pivot shaft and a second carrier portion that supports the other end side of the pivot shaft, and has a power-transmission case that is supported on a transmission case and includes a power-transmission case main body in which the differential case and the second carrier portion are integrated and the first carrier portion, which is joined to one end wall of the power-transmission case main body, a bearing boss portion is integrally and projectingly provided on a side face, on the sun gear side, of the one end wall, the bearing boss portion extending toward the sun gear side and having an outer peripheral part of one of output shafts rotatably fitted into and supported thereby, the bearing boss portion is present at a position where it overlaps the sun gear at least partially in an axial direction, and an outer peripheral part of the bearing boss portion is relatively rotatably fitted into a center hole of the sun gear.
Opening claim text (preview).
The invention claimed is: 1. A transmission device comprising a reduction gear having a sun gear, a ring gear that is disposed concentrically with the sun gear, a plurality of planetary gears that mesh with the sun gear and the ring gear, and a carrier that rotatably supports the plurality of planetary gears via respective pivot shafts, and a differential device having a differential case that receives rotational power from the reduction gear and a differential mechanism that is disposed within the differential case and distributes the rotational power between a pair of output shafts while allowing differential rotation, the sun gear and the differential case being disposed on the same axis, wherein the carrier is dividedly formed from a first carrier portion that supports one end side of the pivot shaft and a second carrier portion that supports the other end side of the pivot shaft, the transmission device comprises a power-transmission case that is rotatably supported on a transmission case and comprises a power-transmission case main body in which the differential case and the second carrier portion are integrated and the first carrier portion, which is joined to one end wall of the power-transmission case main body, a bearing boss portion is integrally and projectingly provided on a side face, on the sun gear side, of said one end wall, the bearing boss portion extending toward the sun gear side and having an outer peripheral part of one of the output shafts rotatably fitted into and supported thereby, the bearing boss portion is present at a position where the bearing boss portion overlaps the sun gear at least partially in an axial direction, and an outer peripheral part of the bearing boss portion is relatively rotatably fitted into a center hole of the sun gear, and the first carrier portion has a boss portion protruding outward in the axial direction, and the power-transmission case is rotatably supported on the transmission case via the boss portion. 2. The transmission device according to claim 1 , wherein a space part is present between said one end wall and an extremity face of the sun gear, part of the lubricating oil flowing through an interior of the power-transmission case accompanying operation of the reduction gear being able to flow into the space part. 3. The transmission device according to claim 2 , wherein an oil passage is provided between mating faces of the sun gear and the bearing boss portion, one end of the oil passage communicating with the space part, and the other end of the oil passage communicating with a section between the center hole and an outer peripheral part of said one output shaft on an outer side in the axial direction of the bearing boss portion. 4. The transmission device according to claim 3 , wherein a gear pump chamber is defined between opposing faces of said one end wall of the power-transmission case main body and the first carrier portion, the planetary gear comprises a specific planetary gear portion that has gear teeth closely opposing a peripheral face of the gear pump chamber and rotates within the gear pump chamber, the specific planetary gear portion and the gear pump chamber supply lubricating oil from an outer peripheral side of the power-transmission case toward a center part side, and part of the lubricating oil thus supplied is supplied to the space part. 5. The transmission device according to claim 4 , wherein the planetary gear is a two-stage planetary gear integrally having a first planetary gear portion meshing with the sun gear and a second planetary gear portion formed so as to have a smaller diameter than a diameter of the first planetary gear portion and meshing with the ring gear, and the sun gear and the first planetary gear portion mesh with each other via helical teeth, the helical teeth having a twist angle that pushes out lubricating oil retained by a valley part of the gear teeth of the first planetary gear portion into the space part due to the sun gear and the first planetary gear portion meshing with each other. 6. The transmission device according to claim 2 , wherein a gear pump chamber is defined between opposing faces of said one end wall of the power-transmission case main body and the first carrier portion, the planetary gear comprises a specific planetary gear portion that has gear teeth closely opposing a peripheral face of the gear pump chamber and rotates within the gear pump chamber, the specific planetary gear portion and the gear pump chamber supply lubricating oil from an outer peripheral side of the power-transmission case toward a center part side, and part of the lubricating oil thus supplied is supplied to the space part. 7. The transmission device according to claim 6 , wherein the planetary gear is a two-stage planetary gear integrally having a first planetary gear portion meshing with the sun gear and a second planetary gear portion formed so as to have a smaller diameter than a diameter of the first planetary gear portion and meshing with the ring gear, and the sun gear and the first planetary gear portion mesh with each other via helical teeth, the helical teeth having a twist angle that pushes out lubricating oil retained by a valley part of the gear teeth of the first planetary gear portion into the space part due to the sun gear and the first planetary gear portion meshing with each other. 8. A transmission device comprising a reduction gear having a sun gear, a ring gear that is disposed concentrically with the sun gear, a plurality of planetary gears that mesh with the sun gear and the ring gear, and a carrier that rotatably supports the plurality of planetary gears via respective pivot shafts, and a differential device having a differential case that receives rotational power from the reduction gear and a differential mechanism that is disposed within the differential case and distributes the rotational power between a pair of output shafts while allowing differential rotation, the sun gear and the differential case being disposed on the same axis, wherein the carrier is dividedly formed from a first carrier portion that supports one end side of the pivot shaft and a second carrier portion that supports the other end side of the pivot shaft, the transmission device comprises a power-transmission case that is rotatably supported on a transmission case and comprises a power-transmission case main body in which the differential case and the second carrier portion are integrated and the first carrier portion, which is joined to one end wall of the power-transmission case main body, a bearing boss portion is integrally and projectingly provided on a side face, on the sun gear side, of said one end wall, the bearing boss portion extending toward the sun gear side and having an outer peripheral part of one of the output shafts rotatably fitted into and supported thereby, the bearing boss portion is present at a position where the bearing boss portion overlaps the sun gear at least partially in an axial direction, and an outer peripheral part of the bearing boss portion is relatively rotatably fitted into a center hole of the sun gear, a space part is present between said one end wall and an extremity face of the sun gear, part of the lubricating oil flowing through an interior of the power-transmission case accompanying operation of the reduction gear being able to flow into the space part, a gear pump chamber is defined between opposing faces of said one end wall of the power-transmission case main body and the first carrier portion, the planetary gear comprises a specific planetary gear portion that has gear teeth closely opposing a peripheral face of the gear pump chamber and rotates within the gear pump chamber, the specific planetary
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