Claims
- 1. A coolant pump for use with an internal combustion engine having a crankshaft and a camshaft driven by the crankshaft, said coolant pump comprising:
a pump housing fixedly mountable to the engine and including an inlet opening to receive coolant and an outlet opening to discharge coolant; an impeller shaft mounted directly to the camshaft so as to be concentrically rotatably driven thereby; a pump impeller operatively mounted to the impeller shaft within the pump housing and including a plurality of axial extending projections, the pump impeller rotatable to draw the coolant into the pump housing through the inlet opening and discharge the coolant at a higher pressure through the outlet opening; and a seal assembly having a surface engaged with the plurality of axial extending projections of the pump impeller so as to maintain perpendicular alignment of the seal assembly with respect to the impeller shaft.
- 2. The coolant pump according to claim 1, wherein the seal assembly includes:
a unitizer mounted on the impeller shaft for rotation therewith, the unitizer including a radially outwardly extending portion having a plurality of openings therethrough; a mating ring providing a front face surface, the mating ring being mounted to the unitizer such that the plurality of openings in the unitizer expose portions of the front face surface therethrough; and a seal unit providing a seal and an aligning member, the seal unit being coupled with the unitizer such that the aligning member is engaged with a rear face surface of the mating ring, wherein the seal assembly is engaged with the pump impeller such that the plurality of axial extending projections of the pump impeller extend through the openings in the radially outwardly extending portion of the unitizer and engage the portions of the face surface of the mating ring so as to align the mating ring to the impeller shaft, which aligns the aligning member engaged with the mating ring to the impeller shaft, which in turn aligns the seal unit to the impeller shaft.
- 3. The coolant pump according to claim 2, wherein the number of axial extending projections of the pump impeller is equal to the number of openings provided in the outwardly extending portion of the unitizer.
- 4. The coolant pump according to claim 3, wherein the plurality of axial extending projections are integrally molded with the pump impeller.
- 5. The coolant pump according to claim 3, wherein the plurality of axial extending projections are provided on a ring-shaped member, the ring-shaped member being mounted to the pump impeller.
- 6. The coolant pump according to claim 3, wherein the pump impeller includes three axial extending projections and the outwardly extending portion of the unitizer includes three openings.
- 7. The coolant pump according to claim 2, wherein the openings provided in the outwardly extending portion of the unitizer allow coolant to cool the portions of the face surface of the mating ring.
- 8. The coolant pump according to claim 1, wherein the impeller shaft extends into the housing in a sealing engagement and in an unsupported relation.
- 9. The coolant pump according to claim 1, further comprising a damper assembly disposed between the impeller shaft and the pump impeller, the damper assembly coupling the impeller shaft to the pump impeller so that powered rotation of the impeller shaft rotates the pump impeller.
- 10. The coolant pump according to claim 1, wherein the impeller includes a plurality of blades configured and positioned to draw coolant into the housing via the inlet opening and discharge the coolant via the outlet opening.
- 11. The coolant pump according to claim 1, wherein the housing includes a support surface configured and positioned to engage the impeller shaft so as to maintain radial alignment between the impeller shaft and the housing as the impeller shaft is being mounted to the camshaft of the engine, thereafter the housing being fixedly mounted to the engine spacing the support surface from the impeller shaft.
- 12. The coolant pump according to claim 1, wherein the seal assembly is constructed and arranged to prevent coolant from escaping from the housing.
- 13. A combination comprising
an internal combustion engine having a crankshaft and a camshaft driven by the crankshaft, and a coolant pump comprising:
a pump housing fixedly mountable to the engine and including an inlet opening to receive coolant and an outlet opening to discharge coolant; an impeller shaft mounted directly to the camshaft so as to be concentrically rotatably driven thereby; a pump impeller operatively mounted to the impeller shaft within the pump housing and including a plurality of axial extending projections, the pump impeller rotatable to draw the coolant into the pump housing through the inlet opening and discharge the coolant at a higher pressure through the outlet opening; and a seal assembly having a surface engaged with the plurality of axial extending projections of the pump impeller so as to maintain perpendicular alignment of the seal assembly with respect to the impeller shaft.
- 14. The combination according to claim 13, wherein the seal assembly includes:
a unitizer mounted on the impeller shaft for rotation therewith, the unitizer including a radially outwardly extending portion having a plurality of openings therethrough; a mating ring providing a front face surface, the mating ring being mounted to the unitizer such that the plurality of openings in the unitizer expose portions of the front face surface therethrough; and a seal unit providing a seal and an aligning member, the seal unit being coupled with the unitizer such that the aligning member is engaged with a rear face surface of the mating ring, wherein the seal assembly is engaged with the pump impeller such that the plurality of axial extending projections of the pump impeller extend through the openings in the radially outwardly extending portion of the unitizer and engage the portions of the face surface of the mating ring so as to align the mating ring to the impeller shaft, which aligns the aligning member engaged with the mating ring to the impeller shaft, which in turn aligns the seal unit to the impeller shaft.
- 15. The combination according to claim 14, wherein the number of axial extending projections of the pump impeller is equal to the number of openings provided in the outwardly extending portion of the unitizer.
- 16. The combination according to claim 15, wherein the plurality of axial extending projections are integrally molded with the pump impeller.
- 17. The combination according to claim 15, wherein the plurality of axial extending projections are provided on a ring-shaped member, the ring-shaped member being mounted to the pump impeller.
- 18. The combination according to claim 15, wherein the pump impeller includes three axial extending projections and the outwardly extending portion of the unitizer includes three openings.
- 19. The combination according to claim 14, wherein the openings provided in the outwardly extending portion of the unitizer allow coolant to cool the portions of the face surface of the mating ring.
- 20. The combination according to claim 13, wherein the impeller shaft extends into the housing in a sealing engagement and in an unsupported relation.
- 21. The combination according to claim 13, further comprising a damper assembly disposed between the impeller shaft and the pump impeller, the damper assembly coupling the impeller shaft to the pump impeller so that powered rotation of the impeller shaft rotates the pump impeller.
- 22. The combination according to claim 13, wherein the impeller includes a plurality of blades configured and positioned to draw coolant into the housing via the inlet opening and discharge the coolant via the outlet opening.
- 23. The combination according to claim 13, wherein the housing includes a support surface configured and positioned to engage the impeller shaft so as to maintain radial alignment between the impeller shaft and the housing as the impeller shaft is being mounted to the camshaft of the engine, thereafter the housing being fixedly mounted to the engine spacing the support surface from the impeller shaft.
- 24. The combination according to claim 13, wherein the seal assembly is constructed and arranged to prevent coolant from escaping from the housing.
Parent Case Info
[0001] The present application is a Continuation-in-Part of U.S. Application No. 10/075,995, filed Feb. 15, 2002, and also claims priority to U.S. Provisional Application No. 60/268,599, filed Feb. 15, 2001, the entireties of both being hereby incorporated into the present application by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60268599 |
Feb 2001 |
US |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10075995 |
Feb 2002 |
US |
Child |
10217326 |
Aug 2002 |
US |