Variable speed aircraft transmission
US-2016076629-A1 · Mar 17, 2016 · US
US10968985B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10968985-B2 |
| Application number | US-201916385784-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 16, 2019 |
| Priority date | Apr 16, 2019 |
| Publication date | Apr 6, 2021 |
| Grant date | Apr 6, 2021 |
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A combination starter-generator device for a work vehicle includes an electric machine and a bi-directional gear set. The gear set is configured to receive rotational input from the electric machine and from the engine and to couple the electric machine and the engine in a first power flow direction and a second power flow direction. In the first power flow direction the gear set effects a first gear ratio, and in the second power flow direction the gear set effects a second gear ratio. In the first power flow direction, the gear set receives input power from the electric machine in a first clock direction and outputs power to the engine in a second clock direction opposite the first clock direction. In the second power flow direction, input power from the engine is in the second clock direction and output power to the electric machine is in the second clock direction.
Opening claim text (preview).
What is claimed is: 1. A combination starter-generator device for a work vehicle having an engine, the starter-generator device comprising: an electric machine; a bi-directional gear set configured to receive rotational input from the electric machine and from the engine and to couple the electric machine and the engine in a first power flow direction and a second power flow direction in which in the first power flow direction the gear set effects a first gear ratio and in the second power flow direction the gear set effects a second gear ratio; wherein the gear set is a planetary gear set having a sun gear and a carrier; at least one clutch assembly coupled to the gear set and configured to engage in the first power flow direction and to disengage in the second power flow direction; and wherein the at least one clutch assembly includes a first clutch assembly that is engaged in the first power flow direction and disengaged in the second power flow direction, and a second clutch assembly that is engaged in the second power flow direction and disengaged in the first power flow direction; and wherein the first clutch assembly is engaged in the first power flow direction to couple the carrier to a housing of the gear set, and wherein the second clutch assembly is engaged in the second power flow direction to couple the carrier to the sun gear. wherein, in the first power flow direction, the gear set receives input power from the electric machine in a first clock direction and outputs power to the engine in a second clock direction opposite the first clock direction; and wherein, in the second power flow direction, input power from the engine is in the second clock direction and output power from the gear set to the electric machine is in the second clock direction. 2. The starter-generator device of claim 1 , wherein the first clutch assembly is a one-way mechanically-actuated clutch. 3. The starter-generator device of claim 1 , wherein the second clutch assembly is a hydraulically actuated or released clutch. 4. A combination starter-generator device for a work vehicle having an engine, the starter-generator device comprising: an electric machine; and a bi-directional gear set configured to receive rotational input from the electric machine and from the engine and to couple the electric machine and the engine in a first power flow direction and a second power flow direction in which in the first power flow direction the gear set effects a first gear ratio and in the second power flow direction the gear set effects a second gear ratio, wherein the gear set includes an epicyclic gear train including a sun gear, planet gears, a carrier and a ring gear and wherein the planet gears are in a radially stacked multi-planet array in which sets of an odd number of the planet gears are aligned along a radial reference axis; wherein, in the first power flow direction, the gear set receives input power from the electric machine in a first clock direction and outputs power to the engine in a second clock direction opposite the first clock direction; and wherein, in the second power flow direction, input power from the engine is in the second clock direction and output power to the electric machine is in the second clock direction. 5. The starter-generator device of claim 4 , wherein rotational power from the electric machine moves in the first power flow direction from the sun gear to the ring gear to the engine; and wherein rotational power from the engine moves in the second power flow direction from the ring gear to the sun gear to the electric machine. 6. The starter-generator device of claim 5 , further including first and second clutch assembly coupled to the gear set and disposed between the engine and the planetary gear set; wherein the first clutch assembly is engaged in the first power flow direction to couple the carrier to a housing of the gear set, and wherein the second clutch assembly is engaged in the second power flow direction to couple the carrier to the sun gear. 7. The starter-generator device of claim 5 , wherein the first clutch assembly is a one-way mechanically-actuated clutch. 8. A drivetrain assembly for a work vehicle, comprising: an engine; a belt and pulley arrangement; and a combination starter-generator device including: an electric machine; a bi-directional gear set configured to receive rotational input from the electric machine via the belt and pulley arrangement and to receive rotational input from the engine, the gear set coupling the electric machine and the engine in a first power flow direction and a second power flow direction in which in the first power flow direction the gear set effects a first gear ratio and in the second power flow direction the gear set effects a second gear ratio; and at least one clutch assembly including a first clutch assembly that is engaged in the first power flow direction and disengaged in the second power flow direction, and a second clutch assembly that is engaged in the second power flow direction and disengaged in the first power flow direction, wherein the first clutch assembly is a one-way mechanically-actuated clutch; wherein the first and second clutch assemblies are coupled to the gear set and disposed between the engine and the gear set; wherein the gear set is a planetary gear set having a sun gear and a carrier; wherein the first clutch assembly is engaged in the first power flow direction to couple the carrier to a housing of the gear set, and wherein the second clutch assembly is engaged in the second power flow direction to couple the carrier to the sun gear; wherein, in the first power flow direction, input power is received from the belt and pulley arrangement in a first clock direction and output power to the engine is in a second clock direction opposite the first clock direction; and wherein, in the second power flow direction, input power from the engine is in the second clock direction and output power to the belt and pulley arrangement is in the second clock direction. 9. The drivetrain of claim 8 , further including a single belt tensioner applying tension to a first side of the belt in both the first power direction and the second power flow direction. 10. The drivetrain of claim 8 , wherein the planetary gear set includes planet gears and a ring gear; and wherein the planet gears are in a radially stacked multi-planet array in which sets of an odd number of the planet gears are aligned along a radial reference axis. 11. The drivetrain of claim 10 , wherein rotational power from the electric machine moves in the first power flow direction from the sun gear to the ring to the engine; and wherein rotational power from the engine moves in the second power flow direction from the ring gear to the sun gear to the electric machine.
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