Electro-hydraulic drive system
US-9435324-B2 · Sep 6, 2016 · US
US9750191B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9750191-B2 |
| Application number | US-201615254674-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 1, 2016 |
| Priority date | May 10, 2012 |
| Publication date | Sep 5, 2017 |
| Grant date | Sep 5, 2017 |
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Provided is an electro-hydraulic drive system including first and second electro-hydraulic transmissions for driving respective wheels, the transmissions each including an electric motor, a hydraulic pump driven by the electric motor, and a hydraulic motor drive by the hydraulic pump. When used in a turf vehicle, such as a zero-turn-radius mower, the electro-hydraulic drive system operates the wheels independently from an engine of the mower, thereby allowing the mower to be moved without having to start the engine. In this way, power consumption is lowered and total efficiency of the mower is increased.
Opening claim text (preview).
What is claimed is: 1. A mower comprising: an engine; an electro-hydraulic drive system including: a first electro-hydraulic transmission for driving a first wheel, the first electro-hydraulic transmission including a first electric motor, a first hydraulic pump coupled to and driven by the first electric motor, and a first hydraulic motor coupled to and driven by the first hydraulic pump, the hydraulic motor including an output shaft for driving the wheel; and a second electro-hydraulic transmission for driving a second wheel, the second electro-hydraulic transmission including a second electric motor, a second hydraulic pump coupled to and driven by the second electric motor, and a second hydraulic motor coupled to and driven by the second hydraulic pump, the hydraulic motor including an output shaft for driving the wheel, wherein the electro-hydraulic drive system is operable during a normal operating state of the engine and wherein the electro-hydraulic drive system is operable when the engine is in a non-operating state. 2. The mower according to claim 1 , further including at least one controller coupled to the first and second electric motors for controlling the first and second electric motors. 3. The mower according to claim 2 , further including a storage device coupled to the controller, wherein the storage device is configured to power the first and second electric motors. 4. The mower according to claim 3 , wherein the storage device includes at least one battery and/or capacitor. 5. The mower according to claim 1 , wherein the first and second hydraulic pumps are gerotor pumps. 6. The mower according to claim 1 , wherein the first and second hydraulic motors are gerotor motors. 7. The mower according to claim 1 , wherein the first and second electro-hydraulic transmissions additionally include first and second reservoirs respectively for fluid to flow to/from the respective hydraulic pump. 8. The mower according to claim 1 , wherein the first and second electro-hydraulic transmissions additionally include first and second pump plates respectively that house the first and second hydraulic pumps respectively. 9. The mower according to claim 8 , wherein the first and second electro-hydraulic transmissions additionally include first and second porting plates respectively, each porting plate having a pump mount surface coupled to the respective pump plate and a motor mount surface coupled to an end port plate of the respective hydraulic motor, wherein the porting plates include first and second fluid passages for directing hydraulic fluid between the hydraulic pumps and hydraulic motors. 10. The mower according to claim 9 , wherein the pump mount surface of each porting plate includes a path for allowing hydraulic fluid to flow to/from a cavity in the pump mount surface below the hydraulic pump from/to a reservoir. 11. The mower according to claim 9 , wherein the first and second electro-hydraulic transmissions additionally include first and second valve plates coupled to the first and second pump plates respectively on sides of the pump plates opposite the porting plates, wherein the valve plates house respective bypass valves for bypassing the electro-hydraulic drive system. 12. The mower according to claim 1 , wherein the first and second electric motors include first and second output shafts respectively, and the first and second hydraulic pumps include first and second input shafts respectively, wherein the first and second output shafts are respectively coupled to the first and second input shafts for driving the respective hydraulic pumps. 13. The mower according to claim 12 , wherein the first and second electro-hydraulic transmissions additionally include first and second couplers respectively that couple the first and second input shafts to the first and second output shafts respectively. 14. A mower including: a frame; a mower deck supported by the frame; an engine mounted to the frame and configured to power the mower deck; an electro-hydraulic drive system including: a first electro-hydraulic transmission for driving a first wheel, the first electro-hydraulic transmission including a first electric motor, a first hydraulic pump coupled to and driven by the first electric motor, and a first hydraulic motor coupled to and driven by the first hydraulic pump, the hydraulic motor including an output shaft for driving the wheel, wherein each of the first hydraulic pump, the first electric motor, and the first hydraulic motor are mounted relative to a first common housing; and a second electro-hydraulic transmission for driving a second wheel, the second electro-hydraulic transmission including a second electric motor, a second hydraulic pump coupled to and driven by the second electric motor, and a second hydraulic motor coupled to and driven by the second hydraulic pump, the hydraulic motor including an output shaft for driving the wheel, wherein each of the second hydraulic pump, the second electric motor, and the second hydraulic motor are mounted relative to a second common housing; and a controller coupled to the first and second electric motors for controlling the first and second motors, wherein the electro-hydraulic drive system is operable during a normal operating state of the engine and wherein the electro-hydraulic drive system is operable when the engine is in a non-operating state. 15. The mower according to claim 14 , further including a storage device coupled to the controller, wherein the storage device is configured to power the first and second electric motors. 16. The mower according to claim 15 , wherein the electro-hydraulic drive system operates independently from the engine. 17. The mower according to claim 15 , further including a generator coupled to the controller and an output shaft of the engine, the generator being configured to charge the storage device. 18. The mower of claim 1 , wherein the electro-hydraulic drive system is modular, the first electro-hydraulic transmission being a first module and the second electro-hydraulic transmission being a second module.
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