Systems and methods for mast stabilization on a material handling vehicle
Systems and methods for mast stabilization on a material handling vehicle are provided. In one aspect, the present disclosure provides systems and methods for a hydraulic circuit configured to stabilize a mast of a material handling vehicle in dynamic and static events. The hydraulic circuit is integrated into a typical hydraulic system used to raise and lower the mast and thereby a load supported by the mast.
1. A hydraulic system for mast stabilization on a material handling vehicle, the material handling vehicle including a first lift cylinder and a second lift cylinder each configured to receive fluid from a pump, the hydraulic system comprising:
a first flow limiting device arranged between the pump and the first lift cylinder; and
a second flow limiting device arranged between the pump and the second lift cylinder,
wherein the first flow limiting device is configured to restrict fluid flow between the first lift cylinder and the second lift cylinder, and the second flow limiting device is configured to restrict fluid flow between the second lift cylinder and the first lift cylinder; and
wherein the first flow limiting device and the second flow limiting device are solenoid operated proportional valves moveable to selectively inhibit fluid communication between the first lift cylinder and the second lift cylinder in response to a pressure within a respective one of the first lift cylinder and the second lift cylinder.
2. The hydraulic system of claim 1 , wherein the first flow limiting device is in the form of a first control valve and the second flow limiting device is in the form of a second control valve.
3. The hydraulic system of claim 1 , further comprising a first accumulator configured to be selectively in fluid communication with the first lift cylinder via a first accumulator control valve, and a second accumulator configured to be selectively in fluid communication with the second lift cylinder via a second accumulator control valve.
4. The hydraulic system of claim 3 , wherein the first accumulator control valve is moveable between a first position where fluid communication is inhibited between the first accumulator and the first lift cylinder and a second position where fluid communication is provided between the first accumulator and the first lift cylinder.
5. The hydraulic system of claim 4 , wherein the first accumulator control valve is selectively moveable between the first position and the second position in response to a pressure within the first lift cylinder.
6. The hydraulic system of claim 3 , wherein the second accumulator control valve is moveable between a first position wherein fluid communication is inhibited between the first accumulator and the second lift cylinder and a second position where fluid communication is provided between the second accumulator and the second lift cylinder.
7. The hydraulic system of claim 6 , wherein the second accumulator control valve is selectively moveable between the first position and the second position in response to a pressure within the second lift cylinder.
8. The hydraulic system of claim 3 , further comprising a bypass line arranged to provide fluid communication from the first lift cylinder and the second lift cylinder to a reservoir.
9. The hydraulic system of claim 8 , where a bypass control valve is arranged on the bypass line and is configured to be selectively moveable between a first position where fluid communication is inhibited from the first and second lift cylinders and the reservoir and a second position where fluid communication is provided from the first and second lift cylinders and the reservoir.
10. The hydraulic system of claim 3 , further comprising a charge line arranged to provide fluid communication from the pump to the first accumulator and the second accumulator.
11. The hydraulic system of claim 10 , wherein a charge control valve is arranged on the charge line and is configured to be selectively moveable between a first position where fluid communication is inhibited between the pump and the first and second accumulators and a second position where fluid communication is provided between the pump and the first and second accumulators.
12. The hydraulic system of claim 11 , wherein a pressure sensor senses a pressure within the first and second accumulators and the charge control valve is selectively moveable between the first position and the second position in response to the pressure sensed by the pressure sensor.