Planetary gear system with disconnect and the drive axle made therewith
An electric drive axle including a first gear and an idler shaft having a second gear and a third gear disposed thereon, wherein the second gear cooperates with the first gear. A clutch assembly selectively couples a planetary gear system to one of the second gear and the third gear, wherein the planetary gear system is configured to produce a predetermined gear ratio between the second gear and the third gear.
1. An electric drive axle, comprising:
a first gear;
a rotatable shaft having a second gear and a third gear disposed thereabout, wherein the second gear cooperates with the first gear;
a planetary gear system disposed about the rotatable shaft and comprising at least one annular hub, wherein the planetary gear system is configured to produce a predetermined gear ratio between the second gear and the third gear;
an annular hub formed on the third gear; and
a sleeve configured to selectively engage one or more of the at least one of annular hub of the planetary gear system and the annular hub of the third gear.
2. The electric drive axle of claim 1 , wherein the planetary gear system includes at least one sun gear, a plurality of planet gears disposed in a carrier, and at least one annulus.
3. The electric drive axle of claim 2 , wherein at least one of the second gear, the at least one sun gear, the carrier, the at least one annulus, and the third gear is coupled to the rotatable shaft for rotation therewith.
4. The electric drive axle of claim 2 , wherein at least one of the second gear, the at least one sun gear, the carrier, the at least one annulus, and the third gear freely rotates about the rotatable shaft.
5. The electric drive axle of claim 2 , wherein at least one of the at least one sun gear, the carrier, and the at least one annulus is stationary.
6. The electric drive axle of claim 2 , further comprising a clutch assembly disposed about the rotatable shaft.
7. The electric drive axle of claim 6 , wherein the clutch assembly is disposed between the planetary gear system and one of the second gear and the third gear.
8. The electric drive axle of claim 6 , wherein at least one of the second gear, the at least one sun gear, the carrier, the at least one annulus, and the third gear is selectively coupled to the rotatable shaft by the clutch assembly.
9. The electric drive axle of claim 2 , wherein the annular hub of the planetary gear system is formed on one of the at least one sun gear, the carrier, and the at least one annulus.
10. An electric drive axle, comprising:
a first gear;
a rotatable shaft having a second gear and a third gear disposed thereabout, wherein the second gear cooperates with the first gear;
a planetary gear system disposed about the rotatable shaft and comprising at least one sun gear, a plurality of planet gears disposed in a carrier, and at least one annulus, wherein the planetary gear system is configured to produce a predetermined gear ratio between the second gear and the third gear;
a clutch assembly disposed about the rotatable shaft and comprising:
an annular hub formed on one of the at least one sun gear, the carrier, and the at least one annulus of the planetary gear system,
an annular hub formed on the third gear, and
a sleeve configured to selectively engage at least one of the annular hub of the planetary gear system and the annular hub of the third gear.
11. The electric drive axle of claim 1 , further comprising a differential mechanism configured to transfer a desired toque to at least one axle shaft.
12. The electric drive axle of claim 11 , further comprising a fourth gear coupled for rotation with the differential mechanism, wherein the fourth gear cooperates with the third gear.
13. A method of generating torque for a vehicle, comprising:
providing an electric drive axle comprising:
a first gear,
a rotatable shaft having a second gear and a third gear disposed thereabout, wherein the second gear cooperates with the first gear,
a planetary gear system disposed about the rotatable shaft and comprising an annular hub,
an annular hub formed on the third gear, and
a sleeve configured to selectively engage the annular hub of the planetary gear system and the annular hub of the third gear; and
producing a desired torque by selectively coupling the planetary gear system to one of the first gear and the third gear.
14. The method of claim 13 , wherein the planetary gear system produces a predetermined gear ratio between the second gear and the third gear.
15. The method of claim 13 , wherein the planetary gear system comprises at least one sun gear, a plurality of planet gears disposed in a carrier, and at least one annulus.
16. The method of claim 13 , wherein the annular hub of the planetary gear system is formed on one of: at least one sun gear, a carrier, and at least one annulus.