Electric axle with compact electric machine and gear train layout
An electric axle is provided. The electric axle includes, in one example, an electric machine rotationally coupled to a layshaft via a first gear reduction and a differential rotationally coupled to the first gear reduction, a first axle shaft, and a second axle shaft. In the electric axle, the electric machine is positioned laterally between at least two drive wheels that are rotationally coupled to the first axle shaft and the second axle shaft and a rotational axis of the electric machine is axially offset from rotational axes of the at least two drive wheels.
1. An electric axle assembly comprising:
an electric machine rotationally coupled to a layshaft via a first gear reduction;
a differential rotationally coupled to the layshaft via a second gear reduction;
a first axle shaft and a second axle shaft directly rotationally coupled to the differential; and
a support structure at least partially enclosing the electric machine and the differential, wherein the support structure includes vertically extending protrusions that are profiled to mate with an engine cradle;
wherein the electric machine is positioned laterally between at least two drive wheels that are rotationally coupled to the first axle shaft and the second axle shaft;
wherein a rotational axis of the electric machine is axially offset from rotational axes of the at least two drive wheels; and
wherein rotational axes of the at least two drive wheels are offset from rotational axes of the first and second axle shafts.
2. The electric axle assembly of claim 1 , wherein the electric axle assembly is a beam axle assembly.
3. The electric axle assembly of claim 1 , further comprising:
a first wheel end gear reduction directly coupled to the first axle shaft and a first wheel shaft; and
a second wheel end gear reduction directly coupled to the second axle shaft and a second wheel shaft.
4. The electric axle assembly of claim 3 , wherein the first and second wheel end gear reductions are final drive gear reductions.
5. The electric axle assembly of claim 1 , wherein the differential is a locking differential designed to selectively inhibit a speed variance between the first and second axle shafts.
6. The electric axle assembly of claim 1 , wherein the second axle shaft passes under an oil reservoir.
7. The electric axle assembly of claim 1 , wherein the electric axle assembly is a single speed electric axle.
8. The electric axle assembly of claim 1 , wherein the electric axle assembly is a front axle assembly.
9. An electric drive assembly, comprising:
an electric beam axle comprising:
a traction motor rotationally coupled to a differential via a first gear reduction and a second gear reduction which each include a gear coupled to a layshaft; and
a support structure at least partially enclosing the traction motor and the differential;
wherein the support structure includes vertically extending protrusions that are profiled to mate with an engine cradle;
wherein the second axle shaft extends underneath an oil reservoir;
wherein the differential is directly rotationally coupled to a first axle shaft and a second axle shaft;
wherein the traction motor is positioned laterally between two drive wheels that are rotationally coupled to the first axle shaft and the second axle shaft;
wherein a rotational axis of the traction motor is axially offset from rotational axes of the two drive wheels; and
wherein rotational axes of the two drive wheels are offset from rotational axes of the first and second axle shafts.
10. The electric drive assembly of claim 9 , further comprising a first wheel end gear reduction rotationally coupled to the first axle shaft and a second wheel end gear reduction coupled to the second axle shaft.
11. The electric drive assembly of claim 9 , wherein the differential is an electronic locking differential designed to selectively inhibit a speed variance between the first and second axle shafts.
12. The electric drive assembly of claim 9 , wherein the electric drive assembly is a single speed front electric axle.
13. A single speed electric beam axle, comprising:
a traction motor rotationally coupled to a differential via a first gear reduction and a second gear reduction which each include a gear rotationally coupled to a layshaft; and
a support structure at least partially enclosing the traction motor and the differential;
wherein the support structure includes vertically extending protrusions that are profiled to mated with an engine cradle
wherein the differential is directly rotationally coupled to a first axle shaft and a second axle shaft;
a first wheel end gear reduction directly rotationally coupled to the first axle shaft; and
a second wheel end gear reduction directly rotationally coupled to the second axle shaft;
wherein the traction motor is positioned laterally between two drive wheels that are each rotationally coupled to one of the first and second wheel end gear reductions;
wherein a rotational axis the traction motor is axially offset from rotational axes of the two drive wheels; and
wherein rotational axes of the two drive wheels are offset from rotational axes of the first and second axle shafts.
14. The single speed electric beam axle of claim 13 , wherein the second axle shaft passes under an oil reservoir.
15. The single speed electric beam axle of claim 13 , wherein the single speed electric beam axle is a front axle that is included in a hybrid electric vehicle.
16. The single speed electric beam axle of claim 13 , wherein the single speed electric beam axle is a front axle that is included in an all-electric vehicle.
17. The single speed electric beam axle of claim 13 , wherein the first axle shaft and the second axle shaft have unequal axial lengths.