Control device for vehicle
US-2018236998-A1 · Aug 23, 2018 · US
US11318828B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11318828-B2 |
| Application number | US-201916971112-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 19, 2019 |
| Priority date | Feb 19, 2018 |
| Publication date | May 3, 2022 |
| Grant date | May 3, 2022 |
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An axle assembly for frame rail vehicles is described herein. The axle assembly includes a first axle shaft and a second axle shaft orientated along a first axis of rotation. A first electric machine is orientated along a second axis of rotation and a second electric machine is spaced from the first electric machine and orientated along a third axis of rotation. A differential gear set is disposed about the first axis of rotation and is coupled to and driven by a common gear reduction to transfer rotational torque from the first and second electric machines to the first and second axle shafts. A speed change mechanism is coupled between the common gear reduction and the differential gear set to change the rotational torque transferred to the first and second axle shafts.
Opening claim text (preview).
What is claimed is: 1. An axle assembly comprising: a first axle shaft orientated along a first axis of rotation; a second axle shaft orientated along said first axis of rotation with said first and second axle shafts extending in opposite directions; a first electric machine orientated along a second axis of rotation substantially parallel with said first axis of rotation; a second electric machine spaced from said first electric machine and orientated along a third axis of rotation substantially parallel with said first axis of rotation; a common gear reduction rotatable about a fourth axis of rotation and driven by said first and second electric machines; a differential gear set disposed about said first axis of rotation and coupled to and driven by said common gear reduction to transfer rotational torque from said first and second electric machines to said first and second axle shafts; and a speed change mechanism (i) orientated between said first electric machine and said second electric machine and (ii) coupled between said common gear reduction and said differential gear set to change the rotational torque transferred to said first and second axle shafts, said speed change mechanism including: a reduction gear set rotatable about said first axis of rotation and driven by said common gear reduction; and an output gear set rotatable about a fifth axis of rotation substantially parallel with said first axis of rotation and driven by said reduction gear set. 2. The axle assembly of claim 1 , further comprising a planetary gear set coupled between said speed change mechanism and said differential gear set for driving said differential gear set. 3. The axle assembly of claim 2 , wherein said planetary gear set includes a planetary gear shaft coupled to said reduction gear set and a sun gear coupled to said planetary gear shaft. 4. The axle assembly of claim 1 , wherein said second axis of rotation of said first electric machine and said third axis of rotation of said second electric machine are orientated at a same radial distance from said first axis of rotation, said second axis of rotation is spaced a first horizontal distance from said first axis of rotation and said third axis of rotation is spaced a second horizontal distance from said first axis of rotation that is different than the first horizontal distance. 5. The axle assembly of claim 4 , wherein said second axis of rotation of said first electric machine is spaced a first vertical distance from said first axis of rotation and said third axis of rotation of said second electric machine is spaced a second vertical distance from said first axis of rotation that is different than the first vertical distance. 6. The axle assembly of claim 5 , wherein said fifth axis of rotation of said output gear set is spaced a different radial distance from said second axis of rotation of said first electric machine than from said third axis of rotation of said second electric machine. 7. The axle assembly of claim 1 , wherein said first electric machine and said second electric machine are orientated in a same direction. 8. The axle assembly of claim 7 , wherein said common gear reduction is positioned at one end of said first and second electric machines and said differential gear set is positioned at an opposite end of said first and second electric machines. 9. The axle assembly of claim 1 , wherein said reduction gear set includes: a first reduction gear coupled to said output gear set; a second reduction gear coupled to said output gear set; and a shift mechanism positioned between said first reduction gear and said second reduction gear and configured to selectively engage said first reduction gear and said second reduction gear. 10. The axle assembly of claim 9 , wherein said output gear set includes a pair of output gears coupled to said first and second reduction gears. 11. The axle assembly of claim 10 , wherein said output gear set includes an output pinion coupled to said differential gear set. 12. The axle assembly of claim 11 , wherein said speed change mechanism includes: a second output gear set rotatable about a sixth axis of rotation substantially parallel with said first axis of rotation and driven by said reduction gear set, said second output gear set including a second output pinion coupled to said differential gear set. 13. The axle assembly of claim 12 , wherein said second output gear set includes one output gear coupled to said second reduction gear. 14. The axle assembly of claim 1 , wherein said common gear reduction includes an input shaft and an input drive wheel fixedly coupled to said input shaft, said input drive wheel engaging said first and second electric machines for transferring the rotational torque from said first and second electric machines to said input shaft, said input shaft orientated coaxially with said first axis of rotation and including an inner surface that defines a input shaft bore configured to receive said first axle shaft therethrough. 15. The axle assembly of claim 14 , wherein said reduction gear set includes: a first reduction gear and a second reduction gear rotatable about said input shaft; and a shift mechanism coupled to said input shaft and positioned between said first reduction gear and said second reduction gear for selectively transferring torque from said input shaft to said first reduction gear and said second reduction gear. 16. The axle assembly of claim 15 , wherein said shift mechanism includes a synchronizer coupled to said input shaft. 17. The axle assembly of claim 15 , wherein said output gear set includes: an output shaft rotatable about said fifth axis of rotation; and a pair of output gears fixedly coupled to said output shaft, each output gear coupled to a corresponding reduction gear. 18. The axle assembly of claim 17 , wherein said output gear set includes an output pinion fixedly coupled to said output shaft, said output pinion coupled to said differential gear set for transferring torque from said output shaft to said differential gear set. 19. The axle assembly of claim 17 , further comprising a planetary gear set coupled between said speed change mechanism and said differential gear set for driving said differential gear set, said planetary gear set including: a planetary gear shaft orientated coaxially with said first axis of rotation and rotatable about said input shaft, said planetary gear shaft extending between a first shaft end and a second shaft end, said first shaft end fixedly coupled to said second reduction gear; and a sun gear fixedly coupled to said second shaft end of said planetary gear shaft.
provided between independent half axles (B60K17/18, B60K17/20 take precedence) · CPC title
of mechanical type · CPC title
comprising more than one electric motor · CPC title
of the planetary type · CPC title
using gearings · CPC title
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