Patent classifications
F16H2048/368
VEHICLE DRIVE DEVICE
A vehicle drive device is provided that can suppress the increase in dimension in the radial direction while ensuring a sufficient speed reduction ratio. Two driving force sources are arranged on a first axis, two output members are arranged on a second axis, two counter gear mechanisms are arranged on a third axis. A planetary gear mechanism is configured to transmit rotation from the two counter gear mechanisms to the output members, and is disposed so as to overlap with both of the two counter gear mechanisms as seen in an axial direction along and axial direction.
Driveline assembly including torque vectoring system
A driveline assembly including a pair of reducers each having a sun gear fixed about a primary shaft. A plurality of planet gears are meshed with and rotatable about the sun gear. A ring is positioned about and meshed with the planet gears. A planet carrier is connected to a center of each of the planet gears and fixed to a wheel output. A low gear clutch is moveable between an engaged position fixing the ring to a ground in the engaged position, and a disengaged position disconnecting the ring from the ground. An upshift clutch is moveable between a contact position fixing the primary axle to the wheel output, and a released position disconnecting the primary axle from direct connection with the wheel output. A controller selectively shifts the center clutch, the low gear clutch and the upshift clutch. Methods of using the driveline assembly are also provided.
Driveline including a variable end reducer assembly
A driveline assembly for a vehicle including at least one primary shaft rotatable about an axis. At least one reducer assembly is coupled with the at least one primary shaft. The reducer assembly includes a sun gear rotatable with the primary shaft. A plurality of planet gears are rotatable about the sun gear. A ring is positioned about the planet gears. A planet carrier is rotatably connected to a center of each of the planet gears. An output shaft is fixed to the planet carrier. A sliding clutch fixes the ring to a ground in a high torque position to provide a gear reduction, and fixes the ring to the planet carrier in a low torque position to provide a 1:1 gear ratio. A method for operating such a driveline assembly is also provided.
Drive device for a motor vehicle
A transmission comprises a first planetary stage that has a first planetary gear train with a first set of planet gears configured to rotate on a first planet carrier and mesh with a first sun gear and a first ring gear, a second planetary stage wherein the second planetary stage has a second planetary gear train with a second set of planet gears, wherein the second set of planet gears are configured to rotate on a second planet carrier and mesh with a second sun gear and a second ring gear, wherein the first planet carrier is connected to the second sun gear, wherein the first sun gear is operatively connected to a drive shaft, a differential stage operatively connected to the second planet carrier and configured to distribute power, and a double-clutch device that includes a first and second clutch and is located between the planetary stages.
Torque vectoring device
A downsized torque vectoring device that is easily to be mounted on an automobile. The torque vectoring device comprises: a differential mechanism that allows a first driveshaft and second driveshaft to rotate at different speeds; an actuator that applies a control torque to the differential mechanism to rotate the first driveshaft and the second driveshaft at different speeds; and a reversing mechanism that allows the first driveshaft and the second driveshaft to rotate in opposite directions. A gear ratio of a first gear train and a gear ratio of the second gear train are different from each other.
Drive device for a vehicle axle of a two-track vehicle
A drive device for a vehicle axle, in particular a rear axle, of a two-track vehicle, wherein the vehicle axle includes an axle differential, which is connectable on the input side to a primary drive machine and is connectable on the output side via flanged shafts arranged on both sides to vehicle wheels of the vehicle axle, wherein an additional drive machine and a shiftable superimposed transmission are associated with the vehicle axle, which transmission is shiftable into a torque distribution gear step, in which a drive torque generated by the additional drive machine is generated, in dependence on the dimension and rotational direction of which a torque distribution on the two vehicle wheels is changeable.
Drive device for a vehicle axle of a two-track vehicle
A drive device for a vehicle axle, especially a rear axle, of a two-track vehicle, wherein the vehicle axle includes an axle differential, which can be connected at the input end to a primary drive machine and can be connected at the output end across flange shafts arranged on either side to vehicle wheels of the vehicle axle, wherein the vehicle axle is associated with an additional drive machine and a shiftable superimposing gear, which can be shifted to a torque distribution gear in which a drive torque is generated by the additional drive machine.
Differential capable of automatically restricting differential ratio and increasing torque
A differential capable of automatically restricting a differential ratio and increasing torque comprises a container. A differential housing is provided in the container. The differential housing is internally provided with a planetary gear, a planetary shaft, a left half axle gear, and a right half axle gear. The planetary gear is provided on the planetary shaft, and the planetary gear engages with the left half axle gear and the right half axle gear, respectively. The differential housing comprises a left housing and a right housing engaging with each other. A ring gear is provided at the outer circumference of an end of the left housing engaging with the right housing, and a bevel ring gear is provided at the outer circumference of an end of the right housing engaging with the left housing.
TORQUE VECTORING DEVICE
A downsized torque vectoring device in which a passive rotation of an actuator is prevented. The torque vectoring device comprises: a differential mechanism that allows a differential rotation between a first rotary shaft and second rotary shaft; an actuator that applies torque to the differential mechanism to rotate the rotary shafts at different speeds; and a reversing mechanism that allows the rotary shafts to rotate in opposite directions. The reversing mechanism comprises a first control gear set and the second rotary shaft arranged coaxially around the rotary shafts, and gear ratios of the first control gear set and the second control gear set are set to different values. A speed increasing gear set and a speed reducing gear set are arranged between a prime mover and an output shaft of the actuator, and ring gears of the speed increasing gear set and the speed reducing gear set are connected to each other.
DIFFERENTIAL CAPABLE OF AUTOMATICALLY RESTRICTING DIFFERENTIAL RATIO AND INCREASING TORQUE
A differential capable of automatically restricting a differential ratio and increasing torque comprises a container. A differential housing is provided in the container. The differential housing is internally provided with a planetary gear, a planetary shaft, a left half axle gear, and a right half axle gear. The planetary gear is provided on the planetary shaft, and the planetary gear engages with the left half axle gear and the right half axle gear, respectively. The differential housing comprises a left housing and a right housing engaging with each other. A ring gear is provided at the outer circumference of an end of the left housing engaging with the right housing, and a bevel ring gear is provided at the outer circumference of an end of the right housing engaging with the left housing.