Four-way hydraulic valve flow control body
US-2019136724-A1 · May 9, 2019 · US
US12409708B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12409708-B2 |
| Application number | US-202218085124-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 20, 2022 |
| Priority date | Jun 9, 2022 |
| Publication date | Sep 9, 2025 |
| Grant date | Sep 9, 2025 |
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An integrated device of a pump and a valve is disclosed. The integrated device of a pump and a valve includes a drive unit, a valve assembly mounted on the drive unit and configured to be switchable to a first position or a second position by the drive unit, a pump mounted on the drive unit, and a controller configured to control operation of the drive unit and the pump. The valve assembly includes a plurality of inlets and a plurality of outlets. At the first position and the second position of the valve assembly, different fluid passages are formed in the valve assembly. The pump is configured to communicate with the valve assembly to allow a flow of fluid through the valve assembly.
Opening claim text (preview).
What is claimed is: 1. A cooling device comprising: a motor; a valve unit configured to switch between a first position and a second position by the motor, the valve unit having a plurality of inlets and a plurality of outlets, wherein different fluid passages are formed in the valve unit in the first position and the second position, respectively; a pump in fluid communication with the valve unit and configured to circulate a fluid through the valve unit; and a controller configured to control the motor and the pump, wherein the motor comprises a holder portion configured to accommodate the pump therein. 2. The cooling device of claim 1 , wherein the plurality of inlets comprises a first inlet and a second inlet, and the plurality of outlets comprises a first outlet and a second outlet, wherein in the first position, (i) a fluid passage is formed between the first inlet and the first outlet, and (ii) a fluid passage is formed between the second inlet and the second outlet, and wherein in the second position, (i) a fluid passage is formed between the first inlet and the second outlet, and (i) a fluid passage is formed between the second inlet and the first outlet. 3. The cooling device of claim 2 , wherein the fluid passing through the second outlet is discharged through the pump. 4. The cooling device of claim 3 , wherein the second outlet comprises a communication passage and a discharge port, wherein the communication passage is configured to provide fluid communication between the valve unit and the pump, and wherein the discharge port is in fluid communication with the communication passage and configured to discharge the fluid passing through the pump. 5. The cooling device of claim 2 , wherein the first inlet, the second inlet, the first outlet, and the second outlet are arranged in the valve unit to form obtuse angles with each other. 6. The cooling device of claim 1 , wherein the valve unit comprises: a valve housing; and a valve rotatably provided inside the valve housing to rotate between the first position and the second position. 7. The cooling device of claim 6 , wherein the valve comprises a first passage and a second passage, and wherein the first passage and the second passage have curved shapes within the valve. 8. The cooling device of claim 6 , wherein the valve unit further comprises: a shaft portion extending from the valve, wherein the shaft portion is connected to a shaft connection portion of the motor that is configured to rotate the shaft portion to switch a position of the valve. 9. The cooling device of claim 6 , wherein the plurality of inlets comprises a first inlet and a second inlet, and the plurality of outlets comprises a first outlet and a second outlet, wherein a plurality of seals are mounted in the valve housing, the plurality of seals comprising first to fourth seals, and wherein the first seal is disposed between the first inlet and the valve, the second seal is disposed between the second inlet and the valve, the third seal is disposed between the first outlet and the valve, and the fourth seal is disposed between the second outlet and the valve. 10. The cooling device of claim 9 , wherein ring members are interposed between the first seal and the first inlet, between the second seal and the second inlet, between the third seal and the first outlet, and between the fourth seal and the second outlet, respectively. 11. The cooling device of claim 10 , wherein each of the ring members has an X-shaped cross section. 12. The cooling device of claim 1 , further comprising a bracket mounted to the motor to surround the motor. 13. The cooling device of claim 1 , wherein the controller is mounted to the motor. 14. The cooling device of claim 13 , further comprising a casing mounted to the motor and configured to protect the controller. 15. The cooling device of claim 1 , wherein the controller comprises a plurality of terminals configured to provide connection with the motor and the pump. 16. A cooling system comprising: a first cooling loop and a second cooling loop configured to circulate a coolant; an integrated device having a pump and a valve, the integrated device being disposed between the first and second cooling loops and being switchable between a first position and a second position that form different fluid passages between the first and second cooling loops; and a controller configured to control the integrated device to be placed in the first position or the second position based on a preset condition, wherein the preset condition includes one or more of a flow rate and a temperature of the coolant. 17. The cooling system of claim 16 , wherein in the first position, the first cooling loop and the second cooling loop communicate with each other via the integrated device, and wherein in the second position, the first cooling loop and the second cooling loop are separated from each other via the integrated device. 18. A cooling system comprising: a first cooling loop and a second cooling loop configured to circulate a coolant; an integrated device having a pump and a valve, the integrated device being disposed between the first and second cooling loops and being switchable between a first position and a second position that form different fluid passages between the first and second cooling loops; and a controller configured to control the integrated device to be placed in the first position or the second position based on a preset condition, wherein the coolant circulating in the first cooling loop is in a heat exchange relationship with a radiator and power conversion parts of a vehicle, and the coolant circulating in the second cooling loop is in a heat exchange relationship with a battery of the vehicle.
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