Hydraulic fluid supply apparatus and methods
View Patent ↗Commonly available industrial vehicles may be constructed with a frame originally designed for a particular fuel source where such a frame is used to construct an industrial vehicle that uses a different fuel source with a different fuel storage compared to the industrial vehicle for which such a frame was originally intended. Such a truck powered by a different fuel source typically includes an empty space that was originally intended to house the original fuel, and such empty space may be used to increase the hydraulic storage capacity for such a truck.
1. An industrial vehicle, comprising:
a component operated by pressurized hydraulic fluid; and
a hydraulic circuit configured to supply the pressurized hydraulic fluid to the component, the hydraulic circuit comprising;
a first hydraulic storage tank configured to be pressurized to a predetermined pressure that is greater than atmospheric pressure surrounding the industrial vehicle;
a second hydraulic storage tank configured to be pressurized to the atmospheric pressure surrounding the industrial vehicle;
a pump, wherein the pump pressurizes hydraulic fluid to generate the pressurized hydraulic fluid with a first pressure greater than a second pressure of the hydraulic fluid, wherein the pump supplies the pressurized hydraulic fluid to the component and wherein the hydraulic fluid exits the component with the second pressure;
a first fluid conduit connected between the first hydraulic storage tank and the second hydraulic storage tank and located to communicate the hydraulic fluid between the first hydraulic storage tank and the second hydraulic storage tank;
a second fluid conduit connected between the second hydraulic storage tank and the pump and configured to communicate the hydraulic fluid from the second hydraulic storage tank to the pump;
a third fluid conduit connected between the component and the first hydraulic storage tank and configured to communicate the hydraulic fluid from the component to the first hydraulic storage tank;
a fourth fluid conduit connected between the first hydraulic storage tank and the second hydraulic storage tank and located to primarily communicate air between the first hydraulic storage tank and the second hydraulic storage tank and to secondarily communicate the hydraulic fluid between the first hydraulic storage tank and the second hydraulic storage tank; and
a fifth fluid conduit connected between the second hydraulic storage tank and a breather communicating with the atmosphere surrounding the vehicle and configured to communicate air between the second hydraulic storage tank and the breather such that the first storage tank substantially maintains the predetermined pressure.
2. An industrial vehicle according to claim 1 , wherein the first fluid conduit, the fourth fluid conduit, and the fifth fluid conduit have respective inner diameters that are sized such that pressurization of the first hydraulic storage tank does not exceed the predetermined pressure, and wherein the predetermined pressure is based on a predetermined volume of the first hydraulic storage tank and a predetermined rate of fluid flow through the third fluid conduit.
3. An industrial vehicle according to claim 2 , wherein the predetermined pressure is 8 psi.
4. An industrial vehicle according to claim 3 , wherein:
the predetermined volume of the first hydraulic storage tank is 34 liters; and
the predetermined rate of fluid flow through the third fluid conduit is 223 liters per minute.
5. An industrial vehicle according to claim 4 wherein an inner diameter of the first fluid conduit is 47.5 mm, an inner diameter of the fourth fluid conduit is 15.9 mm, and an inner diameter of the fifth fluid conduit is 12.7 mm.
6. An industrial vehicle according to claim 1 wherein the industrial vehicle comprises a fork lift truck.