Hydraulic system with energy recovery
A hydraulic system, comprising: a hydraulic pump, a hydraulic load, and an electric machine. The electric machine working as an electric generator and mechanically coupled with said hydraulic pump. A low-pressure fluid tank and a valve assembly comprising one or more valves selectively fluidly connecting the hydraulic load with the low-pressure fluid tank.
1. A hydraulic system, comprising:
a hydraulic pump/motor;
a hydraulic load;
an electric machine configured to work as an electric generator and mechanically coupled with the hydraulic pump/motor;
a low-pressure fluid tank;
a delivery passage connecting the hydraulic pump/motor to the hydraulic load;
a first valve positioned along a branch bypassing part of the delivery passage, the first valve connecting the hydraulic load with the hydraulic pump/motor when pressure at the hydraulic load is above a threshold pressure;
an exit passage connecting the hydraulic load to the low-pressure fluid tank and bypassing the hydraulic pump/motor; and
a second valve positioned along the exit passage, the second valve connecting the hydraulic load with the low-pressure fluid tank when the pressure at the hydraulic load is below the threshold pressure, wherein the second valve is a pilot valve.
2. The hydraulic system according to claim 1 , further comprising a solenoid drivable 2-way valve which, in a first position, connects the delivery passage and the hydraulic load and, in a second position, connects the exit passage and the branch bypassing part of the delivery passage to the hydraulic load.
3. The hydraulic system according to claim 1 , wherein the first valve is a sequence valve.
4. The hydraulic system according to claim 1 , further comprising a safety relief valve and a safety relief passage connected to the delivery passage.
5. The hydraulic system of claim 1 , wherein the bypass branch, the delivery passage, and the exit passage meet at a node and the node is connected to the hydraulic load, and
further comprising a two-position valve connecting the node and the hydraulic load, a first position of the two-position valve flowing fluid in a supply direction, and a second position of the two-position valve flowing fluid in a regeneration direction, and
a check valve positioned along the delivery passage.
6. A hydraulic system, comprising:
a hydraulic pump/motor delivering fluid in a supply direction and receiving fluid in a regeneration direction;
a hydraulic load;
an electric machine mechanically coupled with the hydraulic pump/motor;
a low-pressure fluid tank;
a delivery passage connecting the hydraulic pump/motor to the hydraulic load;
a bypass branch bypassing part of the delivery passage;
a first valve positioned along the bypass branch, the first valve comprising an open position which flows fluid in the regeneration direction and a closed position which prevents flow, and the first valve moving to the open position when a pressure from the hydraulic load is above a pressure threshold, wherein the first valve is a sequence valve;
an exit passage connecting the hydraulic load to the low-pressure fluid tank and bypassing the hydraulic pump/motor;
a second valve positioned along the exit passage, the second valve opening to flow fluid to the low-pressure fluid tank when the pressure from the hydraulic load is below the pressure threshold; and
a third valve preventing flow in the regeneration direction within a portion of the delivery passage.
7. The hydraulic system of claim 6 , wherein the third valve is a solenoid drivable 2-way valve which, in a first position, connects the delivery passage and the hydraulic load and, in a second position, connects the exit passage and the bypass branch to the hydraulic load.
8. The hydraulic system of claim 6 , wherein the second valve is a pilot valve.
9. The hydraulic system of claim 6 , wherein the third valve is a check valve positioned along the delivery passage.
10. The hydraulic system of claim 9 , wherein the bypass branch, the delivery passage, and the exit passage meet at a node and the node is connected to the hydraulic load.
11. The hydraulic system of claim 10 , wherein a fourth valve connects the node and the hydraulic load, and wherein the fourth valve is a two-position valve which, in a first position, flows fluid in the supply direction and, in a second position, flows fluid in the regeneration direction.
12. A hydraulic system, comprising:
a hydraulic pump/motor delivering fluid in a supply direction and receiving fluid in a regeneration direction;
a hydraulic load;
an electric machine mechanically coupled with the hydraulic pump/motor;
a low-pressure fluid tank;
a delivery passage connecting the hydraulic pump/motor to the hydraulic load;
a bypass branch bypassing part of the delivery passage;
a first valve positioned along the bypass branch, the first valve comprising an open position which flows fluid in the regeneration direction and a closed position which prevents flow, and the first valve moving to the open position when a pressure from the hydraulic load is above a pressure threshold;
an exit passage connecting the hydraulic load to the low-pressure fluid tank and bypassing the hydraulic pump/motor;
a second valve positioned along the exit passage, the second valve opening to flow fluid to the low-pressure fluid tank when the pressure from the hydraulic load is below the pressure threshold; and
a 2-way valve which, in a first position, connects the delivery passage and the hydraulic load and, in a second position, connects the exit passage and the bypass branch to the hydraulic load.