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, said impeller shaft extending into said housing in a sealing engagement and in an unsupported relation; a pump impeller operatively mounted to the impeller shaft within the pump housing, 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 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.
- 2. The coolant pump according to claim 1, wherein the damper assembly comprises:an annular inertia ring fixedly mounted to the impeller; and an elastomeric structure coupling the impeller shaft to the inertia ring.
- 3. The coolant pump according to claim 1, wherein the housing is integrally formed with a volute, the volute having a guide surface configured and positioned to facilitate the flow of coolant through the volute and out the outlet opening.
- 4. The coolant pump according to claim 3, 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.
- 5. The coolant pump according to claim 1, further comprising a reservoir constructed and arranged to collect coolant that leaks from the housing.
- 6. The coolant pump according to claim 5, wherein the reservoir is a separate component from the housing and is secured thereto in operative relation.
- 7. The coolant pump according to claim 5, wherein the reservoir is integrally formed with the housing.
- 8. The coolant pump according to claim 5, wherein the housing includes a seal assembly constructed and arranged to prevent coolant from entering the engine and directs leaking coolant from the seal assembly to the reservoir.
- 9. The coolant pump according to claim 5, wherein the housing includes a seal assembly constructed and arranged to prevent coolant from egressing from the housing and directs leaking coolant from the seal assembly to the reservoir.
- 10. The coolant pump according to claim 1, wherein the housing includes a seal assembly constructed and arranged to prevent oil from ingressing into the housing.
- 11. The coolant pump according to claim 1, wherein the housing is plastic.
- 12. A coolant pump for use with an internal combustion engine having a crankshaft and a camshaft having opposing first and second ends with the first end being 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 detachably mounted directly to the second end of the camshaft opposite the first end and being concentrically rotatably driven thereby, said impeller shaft extending into said housing in a sealing engagement and in an unsupported relation; and a pump impeller operatively mounted to the impeller shaft within the pump housing, 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.
- 13. The coolant pump according to claim 1, wherein the pump housing encloses the pump impeller.
- 14. 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, said impeller shaft extending into said housing in a sealing engagement and in an unsupported relation; and a pump impeller operatively mounted to the impeller shaft within the pump housing, 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, 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.
- 15. A combination comprising:an internal combustion engine having a crankshaft and a camshaft having opposing first and second ends with the first end being 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 detachably mounted directly to the second end of the camshaft opposite the first end and being concentrically rotatably driven thereby, said impeller shaft extending into said housing in a sealing engagement and in an unsupported relation; and a pump impeller operatively mounted to the impeller shaft within the pump housing, 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.
- 16. The combination according to claim 15, wherein the pump housing encloses the pump impeller.
- 17. 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, said impeller shaft extending into said housing in a sealing engagement and in an unsupported relation; a pump impeller operatively mounted to the impeller shaft within the pump housing, 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 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.
- 18. The combination according to claim 17, wherein the damper assembly comprises:an annular inertia ring fixedly mounted to the impeller; and an elastomeric structure coupling the impeller shaft to the inertia ring.
- 19. The combination according to claim 18, further comprising a reservoir constructed and arranged to collect coolant leaking from the housing.
- 20. The combination according to claim 19, wherein the housing includes a seal assembly constructed and arranged to prevent coolant from entering the engine and directs leaking coolant from the seal assembly to the reservoir.
- 21. The combination according to claim 20, 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, and thereafter the housing being fixedly mounted to the engine spacing the support surface from the impeller shaft.
- 22. The combination comprising:a valve controlled piston and cylinder internal combustion engine having a piston driven output shaft and a valve actuating camshaft driven by the output shaft; and a coolant system including a coolant flow path which passes through the engine in cylinder cooling relation and thereafter through a cooling zone, the coolant system including a coolant pump comprising: a pump housing within the flow path including an inlet opening configured and positioned to receive coolant from the flow path and an outlet opening configured and positioned to discharge coolant into the flow path; an impeller rotating structure mounted directly to the camshaft so as to be rotatably driven thereby about an axis concentric to a rotational axis of the camshaft; a pump impeller operatively mounted to the impeller rotating structure within the pump housing, the pump impeller being constructed and arranged to draw the coolant into the pump housing through the inlet opening and discharge the coolant at a higher pressure through the outlet opening during rotation thereof; and a damper assembly disposed within the pump housing and being rotatable to dampen torsional vibrations of the camshaft.
- 23. The combination according to claim 22, wherein the damper assembly is disposed between the impeller rotating structure and the pump impeller, the damper assembly being constructed and arranged to couple the impeller rotating structure and the pump impeller together so that powered rotation of the impeller rotating structure rotates the pump impeller via the impeller rotating structure.
- 24. The combination according to claim 23, wherein the damper assembly comprises:an annular inertia ring fixedly mounted to the impeller; and an elastomeric structure positioned between the impeller rotating structure and the inertia ring constructed and arranged to retain the coupling of the inertia ring and hence the impeller on the impeller rotating structure, wherein torsional vibrations occurring within the camshaft are absorbed by the elastomeric structure.
- 25. The combination according to claim 22, wherein the pump housing is fixedly mounted to an outer casing of the engine thereby permitting the impeller rotating structure to be directly coupled to the camshaft without the use of bearings.
- 26. The combination according to claim 22, 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 radially outwardly into a volute defined by the housing, the volute communicating with the outlet opening.
- 27. The combination according to claim 22, 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 axially outwardly into a volute defined by the housing, the volute communicating with the outlet opening.
- 28. The combination according to claim 27, wherein the housing includes an annular guide plate fixed thereto that forms a part of the volute.
- 29. The combination according to claim 27, wherein the housing is integrally formed with the volute, the volute having a guide surface configured and positioned to facilitate the flow of coolant through the volute and out the outlet opening.
- 30. The combination according to claim 29, wherein the volute and guide surface thereof are integrally formed with the housing by using radial slides in the mould.
- 31. The combination according to claim 22, wherein the housing includes a support surface configured and positioned to engage the impeller rotating structure so as to maintain radial alignment between the impeller rotating structure and the housing as the impeller rotating structure is being mounted to the camshaft of the engine, thereafter the housing being fixedly mounted to an outer casing of the engine thereby permitting the impeller rotating structure to be directly coupled to the camshaft without the use of bearings.
- 32. The combination according to claim 22, further comprising a reservoir constructed and arranged to collect coolant that leaks from the housing.
- 33. The combination according to claim 32, wherein the reservoir is a separate component from the housing and is secured thereto in operative relation.
- 34. The combination according to claim 32, wherein the reservoir is integrally formed with the housing.
- 35. The combination according to claim 32, wherein the housing includes a seal assembly constructed and arranged to prevent coolant from entering the engine and wherein coolant that leaks from the seal assembly is collected by the reservoir.
- 36. A coolant pump for use with an internal combustion engine having an output shaft, the coolant pump comprising:a pump housing including an inlet opening and an outlet opening; an impeller rotating structure constructed and arranged to be operatively driven by the output shaft of the internal combustion engine about a rotational axis; a pump impeller operatively mounted to the impeller rotating structure within the pump housing, the pump impeller being constructed and arranged to draw a coolant into the pump housing through the inlet opening and discharge the coolant at a higher pressure through the outlet opening during rotation thereof; and a damper assembly disposed within the pump housing and being constructed and arranged to dampen torsional vibrations of the impeller rotating structure.
- 37. A coolant pump according to claim 36, wherein the damper assembly is disposed between the impeller rotating structure and the pump impeller, the damper assembly being constructed and arranged to couple the impeller rotating structure and the pump impeller together so that powered rotation of the impeller rotating structure rotates the pump impeller.
- 38. A coolant pump according to claim 37, wherein the damper assembly comprises:an annular inertia ring fixedly mounted to the impeller; and an elastomeric structure positioned between the impeller rotating structure and the inertia ring constructed and arranged to retain the coupling of the inertia ring and hence the impeller on the impeller rotating structure, wherein torsional vibrations occurring within the impeller rotating structure are absorbed by the elastomeric structure.
- 39. A coolant pump according to claim 36, wherein the internal combustion engine includes a rotatable camshaft coupled to the output shaft so as to rotate under power from the engine, the impeller rotating structure being mounted directly to the camshaft so as to be rotatably driven thereby and wherein the rotational axis is concentric to a rotational axis of the camshaft.
- 40. A coolant pump according to claim 39, wherein the housing includes a support surface configured and positioned to engage the impeller rotating structure so as to maintain radial alignment between the impeller rotating structure and the housing as the impeller rotating structure is being mounted to the camshaft of the engine, thereafter the housing being fixedly mounted to an outer casing of the engine thereby permitting the impeller rotating structure to be directly coupled to the camshaft without the use of bearings.
- 41. A coolant pump according to claim 36, 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 radially outwardly into a volute defined by the housing, the volute communicating with the outlet opening.
- 42. A coolant pump according to claim 36, 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 axially outwardly into a volute defined by the housing, the volute communicating with the outlet opening.
- 43. A coolant pump according to claim 42, wherein the housing includes an annular guide plate fixed thereto that forms a part of the volute.
- 44. A coolant pump according to claim 42, wherein the housing is integrally formed with the volute, the volute having a guide surface configured and positioned to facilitate the flow of coolant through the volute and out the outlet opening.
- 45. A coolant pump according to claim 44, wherein the volute and guide surface thereof are integrally formed with the housing by using radial slides in the mould.
- 46. A coolant pump according to claim 36, further comprising a reservoir constructed and arranged to collect coolant that leaks from the housing.
- 47. A coolant pump according to claim 46, wherein the reservoir is a separate component from the housing and is secured thereto in operative relation.
- 48. A coolant pump according to claim 46, wherein the reservoir is integrally formed with the housing.
- 49. A coolant pump according to claim 46, wherein the housing includes a seal assembly constructed and arranged to prevent coolant from entering the engine and wherein coolant that leaks from the seal assembly is collected by the reservoir.
- 50. The combination comprising:a valve controlled piston and cylinder internal combustion engine having a piston driven output shaft and a valve actuating camshaft, the camshaft having opposing first and second ends with the first end being driven by the output shaft; and a coolant system including a coolant flow path which passes through the engine in cylinder cooling relation and thereafter through a cooling zone, the coolant system including a coolant pump comprising: a pump housing within the flow path including an inlet opening configured and positioned to receive coolant from the flow path and an outlet opening configured and positioned to discharge cool ant into the flow path; an impeller rotating structure detachably mounted directly to the second end of the camshaft opposite the first end and being rotatably driven thereby about an axis concentric to a rotational axis of the camshaft; a pump impeller operatively mounted to the impeller rotating structure within the pump housing, the pump impeller being constructed and arranged to draw the coolant into the pump housing through the inlet opening and discharge the coolant at a higher pressure through the outlet opening during rotation thereof, wherein the pump housing is fixedly mounted to an outer casing of the engine thereby permitting the impeller rotating structure to be directly coupled to the second end of the camshaft without the use of bearings.
- 51. The combination according to claim 50, further comprising a damper assembly disposed between the impeller rotating structure and the pump impeller,the damper assembly being constructed and arranged to (a) couple the impeller rotating structure and the pump impeller together so that powered rotation of the camshaft rotates the pump impeller via the impeller rotating structure, and (b) act as a torsional vibration damper for the camshaft.
- 52. The combination according to claim 51, wherein the damper assembly comprises:an annular inertia ring fixedly mounted to the impeller; and an elastomeric structure positioned between the impeller rotating structure and the inertia ring constructed and arranged to retain the coupling of the inertia ring and hence the impeller on the impeller rotating structure, wherein torsional vibrations occurring within the camshaft are absorbed by the elastomeric structure.
- 53. The combination according to claim 50, 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 radially outwardly into a volute defined by the housing, the volute communicating with the outlet opening.
- 54. The combination according to claim 50, 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 axially outwardly into a volute defined by the housing, the volute communicating with the outlet opening.
- 55. The combination according to claim 54, wherein the housing includes an annular guide plate fixed thereto that forms a part of the volute.
- 56. The combination according to claim 54, wherein the housing is integrally formed with the volute, the volute having a guide surface configured and positioned to facilitate the flow of coolant through the volute and out the outlet opening.
- 57. The combination according to claim 56, wherein the volute and guide surface thereof are integrally formed with the housing by using radial slides in the mould.
- 58. The combination according to claim 50, wherein the housing includes a support surface configured and positioned to engage the impeller rotating structure so as to maintain radial alignment between the impeller rotating structure and the housing as the impeller rotating structure is being mounted to the camshaft of the engine, thereafter the housing being fixedly mounted to an outer casing of the engine thereby permitting the impeller rotating structure to be directly coupled to the second end of the camshaft without the use of bearings.
- 59. The combination according to claim 50, further comprising a reservoir constructed and arranged to collect coolant that leaks from the housing.
- 60. The combination according to claim 59, wherein the reservoir is a separate component from the housing and is secured thereto in operative relation.
- 61. The combination according to claim 59, wherein the reservoir is integrally formed with the housing.
- 62. The combination according to claim 59, wherein the housing includes a seal assembly constructed and arranged to prevent coolant from entering the engine and wherein coolant that leaks from the seal assembly is collected by the reservoir.
- 63. The combination according to claim 50, wherein the pump housing encloses the pump impeller.
Parent Case Info
The present application claims priority to U.S. Provisional Application of Komorowski, Serial. No. 60/268,599 filed Feb. 15, 2001, the entirety of which is hereby incorporated into the present application by reference.
US Referenced Citations (10)
Foreign Referenced Citations (3)
Number |
Date |
Country |
41 19 131 |
Dec 1992 |
DE |
1 567 303 |
May 1980 |
GB |
9-88582 |
Mar 1997 |
JP |
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/268599 |
Feb 2001 |
US |