Transaxle for electric vehicle
A transaxle for an electric vehicle includes a motor, an inverter chamber, an oil chamber, and a cooling liquid chamber. The inverter chamber accommodates an electronic component configured to control the motor. The oil chamber is configured to store an oil that serves as a refrigerant. A cooling liquid that cools the electronic component flows through the cooling liquid chamber. The inverter chamber includes a wall also serving as a wall of the cooling liquid chamber. The oil chamber includes a wall also serving as a wall of the cooling liquid chamber.
1 . A transaxle for an electric vehicle, the transaxle comprising:
a motor;
an inverter chamber accommodating an electronic component configured to control the motor;
an oil chamber configured to store an oil that serves as a refrigerant; and
a cooling liquid chamber through which a cooling liquid that cools the electronic component flows, wherein
the inverter chamber includes a wall also serving as a wall of the cooling liquid chamber,
the oil chamber includes a wall also serving as a wall of the cooling liquid chamber,
the cooling liquid chamber includes a first liquid chamber extending between the inverter chamber and the oil chamber,
the first liquid chamber includes a partition wall that partitions the first liquid chamber into a first flow passage and a second flow passage, the second flow passage extending back from a portion connected to the first flow passage so that the cooling liquid flows in a direction opposite to a horizontal direction perpendicular to a shaft of the motor in which the cooling liquid flows in the first flow passage, and
the first flow passage and the second flow passage are both located adjacent to the inverter chamber at a side of the wall separating the inverter chamber and the cooling liquid chamber, opposite to the inverter chamber.
2 . The transaxle according to claim 1 , wherein
the cooling liquid chamber includes a second liquid chamber adjacent to the oil chamber,
the second liquid chamber includes a partition wall that partitions the second liquid chamber into a third flow passage and a fourth flow passage, the fourth flow passage extending back from a portion connected to the third flow passage so that the cooling liquid flows in a direction opposite to a direction in which the cooling liquid flows in the third flow passage, and
the third flow passage and the fourth flow passage are both located adjacent to the oil chamber at a side of the wall separating the oil chamber and the cooling liquid chamber, opposite to the oil chamber.
3 . The transaxle according to claim 1 , comprising:
an oil pump configured to pump the oil; and
an oil shower configured to shower the oil pumped by the oil pump on the motor.
4 . The transaxle according to claim 1 , comprising:
a gear directly or indirectly connected to the motor,
wherein the gear is at least partially immersed in the oil.
5 . The transaxle according to claim 1 , comprising:
a gear directly or indirectly connected to the motor, wherein
the gear is lubricated by the oil, and
the oil chamber is an oil catch tank configured to store the oil dispersed when the gear is rotated.
6 . The transaxle according to claim 1 , wherein
the cooling liquid chamber is defined by a transaxle case, forming the inverter chamber and the oil chamber, and a cover, coupled to the transaxle case and forming a wall of the cooling liquid chamber, and
the cover includes an inlet and an outlet for the cooling liquid.