Drive train for a motor vehicle having a directly cooled electric machine and a transmission, and a motor vehicle
A drive train ( 1 ) for a motor vehicle ( 100 ) has an electric machine ( 2 ) with a rotor ( 3 ), a stator ( 4 ) and an air gap ( 5 ) between the rotor ( 3 ) and the stator ( 4 ). The drive train ( 1 ) also has a transmission ( 6 ) and a cooling circuit ( 7 ) for conducting a coolant through the electric machine ( 2 ) and the transmission ( 6 ). The coolant is provided for lubricating and cooling the transmission ( 6 ) and for directly cooling electrical conductors of the stator ( 4 ). The cooling circuit ( 7 ) is provided in such a way that the coolant does not enter the air gap ( 5 ).
1. A drive train for a motor vehicle, comprising:
an electric machine with a rotor, a stator having stator grooves, an air gap arranged between the rotor and the stator and a can separating the stator from both the rotor and the air gap in a fluid tight fashion;
a transmission;
a first cooling circuit for conducting a first coolant through the electric machine and the transmission;
a first heat exchange device disposed to transfer heat between the first coolant in the first cooling circuit and a further medium;
a first valve in the first cooling circuit at a position to receive the first coolant from the electric machine and to direct the first coolant to at least one the first heat exchange device and the transmission;
a second valve in the first cooling circuit at a position to receive the first coolant from the transmission, a first branch extending from the second valve, through the stator and to the first valve, and a second branch extending from the second valve, through the rotor and to the first valve, the second valve regulating flow of the first coolant through the stator and the rotor,
wherein the first coolant is provided for lubricating and cooling the transmission and for directly cooling electrical conductors of the stator, and wherein the can of the first cooling circuit is provided so that the first coolant does not enter the air gap.
2. The drive train of claim 1 , wherein the can is laminated into the electric machine.
3. The drive train of claim 1 , wherein the can is inserted into the electric machine.
4. The drive train of claim 1 , wherein the stator grooves are part of the first cooling circuit.
5. The drive train of claim 1 , wherein the first coolant is an oil.
6. The drive train of claim 1 , wherein the first coolant is dielectric.
7. The drive train of claim 1 , wherein the drive train has a battery and a second cooling circuit that is configured to cool the battery of the drive train with a second coolant, and wherein the first heat exchanging device is configured to transfer heat from the first coolant to the second coolant.
8. The drive train of claim 7 , further comprising second cooling circuit being configured to permit the further second coolant to flow around the cooling plate, and the first cooling circuit being configured to permit the first coolant to flow around at least one of an intermediate circuit capacitor of the power electronics, electrical switching elements of the power electronics and one or more busbars of the power electronics.
9. A motor vehicle having the drive train of claim 1 .