Vehicle drive device with variable transmission
A vehicle drive device with a variable transmission includes a first driving module that provides a driving force, a second driving module that controls a transmission ratio, and a reduction gear part comprising a first sun gear, a second sun gear, and a planetary gear provided inside the second driving module. An output part is connected to one of the first sun gear, the second sun gear, and the planetary gear, and the first driving module is connected to another one of the first sun gear, the second sun gear, and the planetary gear that is not connected to the output part.
1 . A vehicle drive device with a variable transmission, the vehicle drive device comprising:
a first driving module that provides a driving force;
a second driving module that controls a transmission ratio;
a reduction gear part comprising a first sun gear, a second sun gear, and a planetary gear provided inside the second driving module; and
an output part connected to one of the first sun gear, the second sun gear, and the planetary gear,
wherein the first driving module is connected to another one of the first sun gear, the second sun gear, and the planetary gear that is not connected to the output part, and
wherein the second driving module comprises a second rotor, and the planetary gear is disposed inside the second rotor of the second driving module, thereby allowing the transmission ratio to be controlled based on an electric current applied to the second driving module.
2 . The vehicle drive device of claim 1 , wherein the second sun gear has a different number of teeth than the first sun gear and is meshed with the planetary gear.
3 . The vehicle drive device of claim 1 , further comprising:
a housing that accommodates the first driving module and the second driving module; and
a shaft that receives rotation of the first driving module.
4 . The vehicle drive device of claim 3 , wherein the planetary gear is configured to rotate by being connected through a plurality of vertical shafts disposed around the shaft, and by being included in the vertical shafts and a circular carrier rotating around the shaft,
wherein the first sun gear is meshed with the planetary gear on an outer surface of one end of the output part, and
wherein the second sun gear is provided inside the second driving module, disposed above the first sun gear, and meshed with the planetary gear.
5 . The vehicle drive device of claim 4 , wherein the housing comprises a first body accommodating the first driving module, and
wherein the first driving module comprises:
a first stator comprising a first stator core fixed to the first body and a plurality of first coils placed along an inner circumference of the first stator core; and
a first rotor seated inside the first stator, coupled to the first stator to rotate around the shaft, wherein a first magnet corresponding to the first coil is mounted in the first rotor.
6 . The vehicle drive device of claim 5 , wherein when an electric current is applied to the first coil, a magnetic field is formed in the first stator, and the first rotor rotates due to the first magnet interacting with the magnetic field, and
wherein the rotation of the first rotor is applied to a reduction part and is output via the output part to rotate the carrier to which the planetary gear is coupled through the shaft.
7 . The vehicle drive device of claim 4 , wherein the housing comprises a second body accommodating the second driving module,
wherein the second driving module comprises a second stator comprising a second stator core fixed to the second body and a plurality of second coils placed along an inner circumference of the second stator core, and
wherein the second rotor is seated inside the second stator, coupled to the second stator to rotate around the shaft and the output part, wherein a second magnet corresponding to the second coil is mounted in the second rotor.
8 . The vehicle drive device of claim 7 , wherein the second rotor further comprises a rotating housing coupled to an inner surface of the second rotor to rotate together with the second rotor, and
wherein the second sun gear is provided in the rotating housing.
9 . The vehicle drive device of claim 7 , wherein when the electric current is applied to the second driving module, the second rotor corresponding to a rotating body of the second driving module rotates, and
wherein the rotation of the second rotor is applied to a reduction part and is output via the output part, and the planetary gear rotates along with the rotation of the second sun gear coupled to the second rotor.
10 . The vehicle drive device of claim 7 , wherein the reduction gear part generates a reduction ratio via the carrier that takes an input using the rotation of the first driving module, the second sun gear that rotates based on the rotation of the second rotor due to the rotation of the carrier, and the first sun gear that implements an output by rotating due to the rotation of the planetary gear rotating in engagement with the second sun gear.
11 . A vehicle drive device with a variable transmission, the vehicle drive device comprising:
a first driving module that provides a driving force;
a second driving module that controls a transmission ratio;
a reduction gear part comprising a first sun gear, a second sun gear, and a planetary gear provided inside the second driving module; and
an output part connected to one of the first sun gear, the second sun gear, and the planetary gear,
wherein the first driving module is connected to another one of the first sun gear, the second sun gear, and the planetary gear that is not connected to the output part, and
wherein the planetary gear is meshed with both the first sun gear and the second sun gear.
12 . The vehicle drive device of claim 11 , wherein the second sun gear has a different number of teeth than the first sun gear.
13 . The vehicle drive device of claim 11 , wherein the second sun gear is provided inside the second driving module and is disposed axially above the first sun gear.
14 . The vehicle drive device of claim 11 , wherein the second driving module comprises a second rotor, and the planetary gear is disposed inside the second rotor of the second driving module, thereby allowing the transmission ratio to be controlled based on an electric current applied to the second driving module.