Claims
- 1. A sealed crankshaft bearing assembly for a two-stroke engine, comprising:
an inner race; an outer race; a plurality of roller elements disposed between the inner and outer races; and a grease seal disposed between the inner and outer races and spaced axially outward from the roller elements along an axis of the bearing assembly, the grease seal including,
a rigid support structure; and a flexible sealing member attached to the rigid support structure, the flexible sealing member including at least one sealing lip contacting a surface of the inner race to provide a sealing engagement between the grease seal and the inner race, thereby retaining lubrication in an interior of the bearing from escaping at least to an interior of a crankcase of the engine and sealing at least the interior of the bearing against crankcase pressure variations in the engine.
- 2. The bearing assembly of claim 1, wherein the at least one sealing lip comprises:
a first circumferential sealing lip; and a second circumferential sealing lip disposed apart from the first circumferential sealing lip along the axis of the bearing assembly, wherein the first and second circumferential sealing lips contact the surface of the inner race.
- 3. The bearing assembly of claim 1, wherein the outer race includes a counterbore to one side of the plurality of roller elements along the axis of the bearing assembly, an inner ledge of the counterbore spaced axially outward from the roller elements, the grease seal being positioned in the outer race counterbore, the inner ledge of the counterbore preventing the grease seal from contacting the roller elements when the grease seal is installed in the outer race.
- 4. The bearing assembly of claim 3, wherein the grease seal further includes a circumferential spring engaging a radially outward surface of the flexible sealing member to provide additional force in maintaining at least one of the sealing lips in engagement with the inner race.
- 5. The bearing assembly of claim 4, wherein the circumferential spring is positioned behind the circumferential sealing lip positioned closest to the roller elements and a back portion of the circumferential sealing lip positioned closest to the interior of the crankcase is exposed to the interior of the crankcase so that pressure in the interior of the crankcase during operation of the engine presses the sealing lip against the inner race to maintain the sealing lip in engagement with the inner race.
- 6. The bearing assembly of claim 5, wherein a radially inward portion of the rigid support structure is bent toward the spring backed sealing lip so that the exposed portion of the circumferential sealing lip positioned closest to the interior of the crankcase is increased to increase the effect of the crankcase pressure in maintaining that sealing lip in engagement with the inner race.
- 7. The bearing assembly of claim 3, wherein the flexible sealing member is made of Viton.
- 8. The bearing assembly of claim 3, and further comprising:
a bearing cage for retaining the roller elements in a fixed positional relationship to one another.
- 9. The bearing assembly of claim 3, wherein the outer race includes an engaging member adapted for rotationally fixing the outer race with respect to a crankcase of the engine.
- 10. The bearing assembly of claim 3, wherein the rigid support structure is generally L-shaped in section, having an axially extending outer circumferential portion and an interconnected radially extending portion.
- 11. The bearing assembly of claim 10, wherein the flexible sealing member covers an outer surface of the rigid support structure.
- 12. The bearing assembly of claim 11, wherein the flexible sealing member is vulcanized to the outer surface of the rigid support structure.
- 13. The bearing assembly of claim 1, wherein the grease seal further includes a circumferential spring engaging a radially outward surface of the flexible sealing member to provide additional force in maintaining at least one of the sealing lips in engagement with the inner race.
- 14. The bearing assembly of claim 13, wherein the circumferential spring is positioned behind the circumferential sealing lip positioned closest to the roller elements and a back portion of the circumferential sealing lip positioned closest to the interior of the crankcase is exposed to the interior of the crankcase so that pressure in the interior of the crankcase during operation of the engine presses the sealing lip against the inner race to maintain the sealing lip in engagement with the inner race.
- 15. The bearing assembly of claim 13, wherein a radially inward portion of the rigid support structure is bent toward the spring backed sealing lip so that the exposed portion of the circumferential sealing lip positioned closest to the interior of the crankcase is increased to increase the effect of the crankcase pressure in maintaining that sealing lip in engagement with the inner race.
- 16. The bearing assembly of claim 13, wherein the flexible sealing member is made of fluorinated rubber.
- 17. The bearing assembly of claim 13, and further comprising:
a bearing cage for retaining the roller elements in a fixed positional relationship to one another.
- 18. The bearing assembly of claim 13, wherein the outer race includes an engaging member adapted for rotationally fixing the outer race with respect to a crankcase of the engine.
- 19. The bearing assembly of claim 13, wherein the rigid support structure is generally L-shaped in section, having an axially extending outer circumferential portion and an interconnected radially extending portion.
- 20. The bearing assembly of claim 13, wherein the flexible sealing member covers an outer surface of the rigid support structure.
- 21. The bearing assembly of claim 20, wherein the flexible sealing member is vulcanized to the outer surface of the rigid support structure.
- 22. The bearing assembly of claim 1, wherein a back portion of the circumferential sealing lip positioned closest to the interior of the crankcase is exposed to the interior of the crankcase so that pressure in the interior of the crankcase during operation of the engine presses the sealing lip against the inner race to maintain the sealing lip in engagement with the inner race.
- 23. The bearing assembly of claim 22, wherein a radially inward portion of the rigid support structure is bent toward the spring backed sealing lip so that the exposed portion of the circumferential sealing lip positioned closest to the interior of the crankcase is increased to increase the effect of the crankcase pressure in maintaining that sealing lip in engagement with the inner race.
- 24. The bearing assembly of claim 22, wherein the flexible sealing member is made of fluorinated rubber.
- 25. The bearing assembly of claim 22, and further comprising:
a bearing cage for retaining the roller elements in a fixed positional relationship to one another.
- 26. The bearing assembly of claim 22, wherein the outer race includes an engaging member adapted for rotationally fixing the outer race with respect to a crankcase of the engine.
- 27. The bearing assembly of claim 22, wherein the rigid support structure is generally L-shaped in section, having an axially extending outer circumferential portion and an interconnected radially extending portion.
- 28. The bearing assembly of claim 22, wherein the flexible sealing member covers an outer surface of the rigid support structure.
- 29. The bearing assembly of claim 28, wherein the flexible sealing member is vulcanized onto the outer surface of the rigid support structure.
- 30. The bearing assembly of claim 1, wherein the flexible sealing member is made of fluorinated rubber.
- 31. The bearing assembly of claim 1, and further comprising:
a bearing cage for retaining the roller elements in a fixed positional relationship to one another.
- 32. The bearing assembly of claim 1, wherein the outer race includes an engaging member adapted for rotationally fixing the outer race with respect to a crankcase of the engine.
- 33. The bearing assembly of claim 1, wherein the rigid support structure is generally L-shaped in section, having an axially extending outer circumferential portion and an interconnected radially extending portion.
- 34. The bearing assembly of claim 1, wherein the flexible sealing member covers an outer surface of the rigid support structure.
- 35. The bearing assembly of claim 34, wherein the flexible sealing member is vulcanized to the outer surface of the rigid support structure.
Parent Case Info
[0001] This application claims benefit to U.S. Provisional Patent Application Serial No. 60/221,555, which was filed on Jul. 28, 2000. The contents of that provisional application are incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60221555 |
Jul 2000 |
US |