Claims
- 1. A valve manifold for a hydraulic system of a portable air compressor unit, the valve manifold comprising:
a manifold body housing:
a pressure relief valve that diverts flow away from a fan motor when the pressure of hydraulic fluid within the hydraulic system is above a predetermined level; a cold oil bypass valve that diverts flow away from a hydraulic cooler when the temperature of hydraulic fluid within the hydraulic system is below a predetermined level; a proportional flow valve that diverts flow away from the fan motor when the temperature of hydraulic fluid within the hydraulic system is below a predetermined level; and an anti-cavitation valve that prevents pressure build up within the hydraulic system when the air compressor unit is shut off.
- 2. The valve manifold of claim 1, wherein the proportional flow valve automatically reduces hydraulic flow to the fan motor to reduce air flow through the hydraulic cooler when the temperature is below a predetermined level.
- 3. The valve manifold of claim 1, wherein hydraulic flow exits the manifold through a fan supply to flow to the fan motor, and returns to the manifold from the fan motor through a fan return, and the anti-cavitation valve diverts flow from the fan return to the fan supply to create a closed hydraulic circuit between the manifold and the fan motor when the air compressor unit is shut-off.
- 4. A valve manifold for a hydraulic system of a portable air compressor unit, the valve manifold comprising:
a manifold body having:
an inlet port disposed on an inlet side of the manifold body, and hydraulic flow from the hydraulic system enters the manifold body through the inlet port; a main outlet disposed on an outlet side of the manifold body, and hydraulic flow exits the manifold body through the main outlet and flows to a hydraulic cooler; an auxiliary outlet disposed on the outlet side, and hydraulic flow exits the manifold body through the auxiliary outlet and bypasses the hydraulic cooler; a fan supply disposed on a fan side of the manifold body, and hydraulic flow exits the manifold body through the fan supply and flows to a fan motor; and a fan return disposed on the fan side, and hydraulic flow from the fan motor reenters the manifold body through the fan return.
- 5. The valve manifold of claim 4, further comprising a pressure relief valve housed within the manifold body that diverts flow away from the fan supply and the fan motor when the pressure of hydraulic fluid within the hydraulic system is above a predetermined level.
- 6. The valve manifold of claim 4, further comprising a cold oil bypass valve housed within the manifold body that diverts flow away from the main outlet and the hydraulic cooler when the temperature of hydraulic fluid within the hydraulic system is below a predetermined level.
- 7. The valve manifold of claim 4, further comprising a proportional flow valve housed within the manifold body that diverts flow away from the fan supply and the fan motor when the temperature of hydraulic fluid within the hydraulic system is below a predetermined level.
- 8. The valve manifold of claim 4, her comprising an anti-cavitation valve housed within the manifold body that prevents pressure build up within the hydraulic system when the air compressor unit is shut off.
- 9. The valve manifold of claim 8, wherein the anti-cavitation valve diverts flow from the fan return to the fan supply to create a closed hydraulic circuit between the valve manifold and the fan motor when the air compressor unit is shut-off.
- 10. A valve manifold for a hydraulic system of a portable air compressor unit, the valve manifold comprising:
a manifold body having:
an inlet side, and an inlet port disposed on the inlet side; an outlet side, and a main outlet and an auxiliary outlet disposed on the outlet side; a fan side disposed opposite the inlet side, and a fan supply and fan return disposed on the fan side; an inlet passage extending through the manifold from the inlet side to the fan side, and in fluid flow communication with the inlet port and fan supply: an outlet passage extending through the manifold from the inlet side to the fan side and in fluid flow communication with the fan return, main outlet and auxiliary outlet; a cold oil bypass valve at least partially disposed in the outlet passage; a pressure relief valve in fluid flow communication with the inlet passage and the outlet passage; a proportional flow valve in fluid flow communication with the inlet passage and the outlet passage; and an anti-cavitation valve in fluid flow communication with the fan return and fan supply.
- 11. The valve manifold of claim 10, wherein the cold oil bypass valve directs hydraulic flow to the main outlet and the auxiliary outlet, and diverts flow away from the main outlet and a hydraulic cooler when the temperature of hydraulic fluid within the hydraulic system is below a predetermined level;
- 12. The valve manifold of claim 10, wherein the pressure relief valve diverts flow away from a fan motor when the pressure of hydraulic fluid within the hydraulic system is above a predetermined level.
- 13. The valve manifold of claim 10, wherein the proportional flow valve diverts flow away from the fan motor when the temperature of hydraulic fluid within the hydraulic system is below a predetermined level.
- 14. The valve manifold of claim 10, wherein the anti-cavitation valve prevents pressure build up within the hydraulic system when the air compressor unit is shut off.
- 15. The valve manifold of claim 14, wherein the anti-cavitation valve diverts flow from the fan return to the fan supply to create a closed hydraulic circuit between the valve manifold and the fan motor when the air compressor unit is shut-off.
- 16. A hydraulic system for a portable air compressor unit comprising:
a fan motor; a hydraulic cooler; a valve manifold comprising a manifold body having:
an inlet port through which hydraulic flow from the hydraulic system enters the manifold body; a main outlet through which hydraulic flow exits the manifold body and flows to the hydraulic cooler; an auxiliary outlet through which hydraulic flow exits the manifold body and bypasses the hydraulic cooler; a fan supply through which hydraulic flow exits the manifold body and flows to the fan motor; and a fan return through which hydraulic flow from the fan motor reenters the manifold body; a controller; a pressure gauge that measures fluid pressure and sends a first signal to the controller, and the controller actuates a pressure relief valve housed within the manifold body to divert flow away from the fan supply and the fan motor if the fluid pressure is above a predetermined level; a temperature gauge that measures fluid temperature and sends a second signal to the controller, and the controller actuates a cold oil bypass valve housed within the manifold body to divert flow away from the main outlet and the hydraulic cooler if the fluid temperature is above a predetermined level; and a temperature probe that measures fluid temperature and sends a third signal to the controller, and the controller actuates a proportional flow valve housed within the manifold body to divert flow away from the fan supply and the fan motor if the fluid temperature is above a predetermined level.
- 17. The hydraulic system of claim 16, wherein the valve manifold further comprises an anti-cavitation valve housed within the manifold body that diverts flow from the fan return to the fan supply to create a closed hydraulic circuit between the valve manifold and the fan motor and prevent pressure build up within the hydraulic system when the air compressor unit is shut off.
- 18. The hydraulic system of claim 16, wherein the pressure gauge measures the pressure of hydraulic fluid within the valve manifold.
- 19. The hydraulic system of claim 16, wherein the temperature gauge measures temperature of hydraulic fluid within a hydraulic sump.
- 20. The hydraulic system of claim 16, wherein the temperature probe measures fluid temperature within the hydraulic cooler.
Parent Case Info
[0001] This Patent Application claims the benefit of the earlier filing date of provisional Patent Application No. 60/259,988 filed Jan. 5, 2001.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/US01/49556 |
12/27/2001 |
WO |
|