Medicament Preparation and Treatment Devices, Methods, and Systems
US-2024277909-A1 · Aug 22, 2024 · US
US10018207B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10018207-B2 |
| Application number | US-201114110162-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 8, 2011 |
| Priority date | Apr 8, 2011 |
| Publication date | Jul 10, 2018 |
| Grant date | Jul 10, 2018 |
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An arrangement for charging an accumulator with hydraulic fluid is provided. The accumulator is used in a hydraulic boom suspension system for a lift arm of a vehicle and the arrangement includes a first hydraulic pump arranged to supply hydraulic fluid to a hydraulic cylinder system of the lift arm, and a second hydraulic pump arranged to supply hydraulic fluid to a second hydraulic system. The second hydraulic pump is further arranged to supply hydraulic fluid for charging the accumulator.
Opening claim text (preview).
The invention claimed is: 1. An arrangement for charging an accumulator with hydraulic fluid, wherein the accumulator is used in a hydraulic boom suspension system for a lift arm of a vehicle, the arrangement comprising a first hydraulic pump arranged to supply hydraulic fluid to a hydraulic cylinder system of the lift arm, a second hydraulic pump arranged to supply hydraulic fluid to a second hydraulic system, wherein the second hydraulic pump is further arranged to supply hydraulic fluid for charging the accumulator, a first charging function adapted to charge the accumulator to a first pressure using the second pump by ramping up the pressure in the second pump according to a predefined pressure ramp function to a first pressure when the boom suspension system is inactivated, and a second charging function adapted to charge the accumulator to a second pressure using the second pump by further ramping up the pressure in the second pump according to a second predefined pressure ramp function to a level which is greater than the first pressure and substantially equal to a current load pressure in the lift arm hydraulic cylinder system when a control signal indicates that the boom suspension system is to be activated. 2. Arrangement according to claim 1 , wherein the second hydraulic system is a hydraulic motor for driving a cooling fan of the vehicle. 3. Arrangement according to claim 1 , wherein the second hydraulic pump is arranged to be controlled by a pressure regulator valve, by which the pressure of the second hydraulic pump can be set by an electric signal. 4. Arrangement according to claim 1 , wherein the arrangement has a valve for disconnecting the cooling fan motor from the second hydraulic pump when the accumulator is to be charged. 5. Arrangement according to claim 1 , wherein the first pressure is in the range between 80 and 120 bar. 6. Arrangement according to claim 1 , wherein the pressure ramp function is dependent on the rotational speed of the second hydraulic pump. 7. Arrangement according to claim 1 , wherein the arrangement is adapted to connect the accumulator to the lift arm hydraulic cylinder system when the pressure in the accumulator is substantially equal to the current load pressure in the lift arm hydraulic cylinder system. 8. Arrangement according to claim 1 , wherein the arrangement further comprises a valve that is adapted to connect the first hydraulic pump to the accumulator and to disconnect the second pump from the accumulator when a temperature signal for the cooling fan is above a predefined level and/or when a brake pressure signal is below a predefined level. 9. Arrangement according to claim 8 , wherein the valve is spring-loaded such that the first hydraulic pump is connected to the accumulator and that the second pump is disconnected from the accumulator when the valve receives no electrical signal. 10. A working machine comprising an arrangement according to claim 1 . 11. A method for charging an accumulator with hydraulic fluid, wherein the accumulator is used in a hydraulic boom suspension system for a lift arm of a vehicle, the lift arm being provided with a hydraulic cylinder system including a first hydraulic pump arranged to supply hydraulic fluid to the hydraulic cylinder system and a second hydraulic pump arranged to supply hydraulic fluid to a second hydraulic system, wherein the second hydraulic pump is further arranged to supply hydraulic fluid for charging the accumulator, comprising: charging the accumulator to a first pressure using the second pump by ramping up the pressure in the second pump according to a predefined pressure ramp function to a first pressure when the boom suspension system is inactivated, and charging the accumulator to a second pressure using the second pump by further ramping up the pressure in the second pump according to a second predefined pressure ramp function to a level which is greater than the first pressure and substantially equal to a current load pressure in the lift arm hydraulic cylinder system when a control signal indicates that the boom suspension system is to be activated. 12. Method according to claim 11 , comprising connecting the accumulator to the lift arm hydraulic cylinder system when the second pressure is substantially equal to the current load pressure in the lift arm hydraulic cylinder system. 13. Method according to claim 11 , wherein the second hydraulic pump is arranged to supply hydraulic fluid to a hydraulic motor for driving a cooling fan of the vehicle. 14. Method according to claim 13 , comprising controlling the second hydraulic pump by a pressure regulator valve, whereby the pressure of the second hydraulic pump is set by an electric signal. 15. Method according to claim 13 , comprising controlling the flow of the second hydraulic pump, whereby the flow of the second hydraulic pump is set by an electric displacement signal. 16. Method according to claim 13 , comprising connecting the first hydraulic pump to the accumulator and disconnecting the second pump from the accumulator when a temperature signal for the cooling fan is above a predefined level and/or when a brake pressure signal is below a predefined level. 17. Method according to claim 11 , comprising generating the control signal when a reverse gear of the vehicle is activated. 18. A computer comprising program code for performing all the steps of claim 11 . 19. A non-transitory computer program product comprising rant code stored on a computer readable medium for performing all the steps of claim 11 .
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