Claims
- 1. A filter including a housing having an inlet and outlet for directing fluid into and out of the housing, the housing including removably connectable housing portions defining a filter cavity, a pump supported in the filter cavity for pumping fluid through the housing, and a filter element in the filter cavity disposed in surrounding relation to said pump for separating particulate from the fluid, a flow path defined from the inlet, through the filter element and then the pump, to the outlet, fluid passing through said flow path when said pump is operational, and being prevented from flowing through the pump when said pump is non-operational; and a bypass valve in said housing normally in a closed position when said pump is operational, and moving to an open position when said pump is not-operational to provide a by-pass flow path from said inlet to said outlet, bypassing said pump.
- 2. The filter as in claim 1, wherein said bypass valve is supported in an annular diverter plate assembly, said diverter plate assembly including a central opening receiving said pump.
- 3. The filter as in claim 2, wherein said diverter plate assembly includes coupling means for coupling said diverter plate assembly to said housing.
- 4. The filter as in claim 3, wherein said coupling means includes a segmented annular collar projecting axially away from a surface of the diverter plate assembly.
- 5. The filter as in claim 3, wherein said collar closely surrounds said pump.
- 6. The filter as in claim 2, wherein said diverter plate assembly has a lip seal which bounds the central opening in the diverter plate assembly and seals to the pump.
- 7. The filter as in claim 2, wherein said diverter plate assembly includes an outer annular rim projecting axially away from a surface of the plate, said rim closely received in the housing and sealing against one of the housing portions.
- 8. The filter as in claim 2, wherein diverter plate assembly includes an annular flange projecting axially away from a surface of the assembly, and said filter element includes an end cap with a corresponding annular flange projecting axially away from the end cap, the annular flange from the plate and the annular flange from the filter element engaging in sealing relation and preventing fluid flow between the plate and the end cap.
- 9. The filter as in claim 8, wherein the annular flange is radially outwardly disposed from the central opening in the diverter plate assembly.
- 10. The filter as in claim 9, and further including an O-ring seal disposed between the annular flange of the plate and the annular flange from the filter element to provide a fluid-tight seal.
- 11. The filter as in claim 2, wherein the diverter plate assembly includes a segmented annular collar closely receiving the pump and coupling the diverter plate assembly to the housing; a lip seal bounding the central opening and sealing to the pump; an outer annular rim closely received in and sealing to the housing; and an annular flange sealing to the filter element.
- 12. The filter as in claim 2, wherein the bypass valve includes an annular seat integral with said diverter plate assembly, and a ball member supported in the annular seat, the ball member moveable between a first position blocking flow through the annular seat when said pump is operational and a second position allowing flow through the annular seat when the pump is not-operational.
- 13. The filter as in claim 12, wherein said annular seat is closely received in a sleeve integral with the diverter plate assembly, the sleeve fluidly sealed to an outlet passage in one housing portion fluidly connected to the outlet.
- 14. The filter as in claim 1, wherein said bypass valve is in fluid communication with an outlet of the pump, pump outlet pressure when the pump is operational maintaining the bypass valve in a closed position preventing fluid flow through the bypass valve.
- 15. The filter as in claim 1, wherein said bypass valve is exposed to pump outlet pressure, and to fluid inlet pressure at the inlet, the difference in pressures moving the valve from the closed position to the open position.
- 16. The filter as in claim 1, wherein said bypass valve is fixed to one of said housing portions.
- 17. The filter as in claim 16, wherein said housing portions can be separated to enable access and replacement of said filter element, said bypass valve remaining fixed with one of said housing portions during replacement of said filter element.
- 18. The filter as in claim 1, wherein said bypass flow path also passes through the filter element.
- 19. The filter as in claim 2, wherein said diverter plate assembly includes an annular heater pan having a collar receiving the pump and coupling the diverter plate to the housing; and an outer annular rim closely received in and sealing to the housing; and a flow diverter ring disposed adjacent the heater pan and having a lip seal bounding the central opening and sealing to the pump, and an annular flange sealing to the filter element.
- 20. The filter as in claim 1, wherein said bypass valve includes an annular seat and a ball member supported on said annular seat, the ball member moveable between a first position blocking flow through the annular seat when said pump is operational, and a second position allowing flow through the annular seat when the pump is not operational.
- 21. A filter including a housing having an inlet and outlet for directing fluid into and out of the housing, and an internal filter cavity, a pump supported in the filter cavity for pumping fluid through the filter, and a filter element for separating particulate from the fluid, a flow path defined from the inlet, through the filter element and the pump, to the outlet, fluid passing through said flow path when said pump is operational, and being prevented from flowing through the pump when said pump is non-operational; and a bypass valve supported in a diverter plate assembly in said housing, said diverter plate assembly sealing to said housing, to said pump, and to said filter element, and including a one-way check valve, said one-way check valve normally in a closed position when said pump is operational; and moving to an open position when said pump is non-operational to provide a by-pass flow path from said inlet, through said element, to said outlet, bypassing said pump.
- 22. The filter as in claim 21, wherein the diverter plate assembly includes a segmented annular collar closely receiving the pump and coupling the diverter plate assembly to the housing; a lip seal bounding the central opening and sealing to the pump; an outer annular rim closely received in and sealing to the housing; and an annular flange sealing to the filter element.
- 23. The filter as in claim 21, wherein the check valve is exposed to pump outlet pressure and to fluid inlet pressure at the inlet, the difference in pressures moving the valve from the closed to the open position.
- 24. A filter including a housing having an inlet and outlet for directing fluid into and out of the housing, and an internal filter cavity, a pump supported in the filter cavity for pumping fluid through the housing, and a filter element for separating particulate from the fluid, a flow path defined from said inlet, through the filter element and said pump, to said outlet, fluid passing through said flow path when said pump is operational, and being prevented from flowing through the pump when said pump is non-operational; and a bypass valve responsive to pressure from the pump, said by-pass valve normally in a closed position when said pump is operational; and moving to an open position when said pump is not-operational to provide a by-pass flow path from said inlet to said outlet, bypassing said pump.
- 25. The filter as in claim 24, wherein said by-pass flow path is also through said filter element.
RELATED CASES
[0001] This application is continuation-in-part of i) U.S. patent application Ser. No. 09/452,857, filed Dec. 3, 1999; and ii) U.S. patent application Ser. No. 60/168,941, filed Dec. 3, 1999, the disclosures of which are incorporated herein by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60168941 |
Dec 1999 |
US |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09452857 |
Dec 1999 |
US |
Child |
09822983 |
Mar 2001 |
US |