Claims
- 1. A shaft mounted mechanical seal for two relatively moving bearing surfaces comprising:
a shaft having a stepped outer surface and a radially outwardly extending shoulder formed on the outer surface; a first bearing surface formed on one of a rotatable annular element and a stationary annular element, the rotatable annular element adapted to rotate with said shaft and the stationary element adapted to militate against rotation with said shaft; a second bearing surface formed on the other of the rotatable annular element and the stationary annular element, said second bearing surface being in juxtaposed relation to said first bearing surface; an annular retainer disposed on the outer surface of said shaft and abutting the shoulder of said shaft, said retainer having one section for fixedly retaining the rotatable annular element on the outer surface of said drive shaft; a spring member disposed between said retainer and the rotatable annular element for urging the rotatable annular element towards the stationary annular element to engage said first bearing surface and said second bearing surface; a groove formed in at least one of said first bearing surface and said second bearing surface; and a dry lubricant disposed in said groove to provide lubrication between said first bearing surface and said second bearing surface.
- 2. The mechanical seal according to claim 1, wherein said first bearing surface is formed of graphite.
- 3. The mechanical seal according to claim 2, wherein said second bearing surface is formed of silicon carbide.
- 4. The mechanical seal according to claim 3, wherein said lubricant is molybdenum disulfide.
- 5. The mechanical seal according to claim 1, wherein said groove extends annularly.
- 6. The mechanical seal according to claim 1, including at least one additional groove to receive said lubricant.
- 7. The mechanical seal according to claim 6, wherein said grooves are concentrically spaced apart.
- 8. The mechanical seal according to claim 1, including a plurality of spaced apart cavities to receive said lubricant.
- 9. The mechanical seal according to claim 8, wherein said cavities are cylindrical.
- 10. The mechanical seal according to claim 9, wherein said cavities are arrayed to extend in spaced apart annular array.
- 11. The mechanical seal according to claim 8, including at least one concentrically disposed annular groove.
- 12. A shaft mounted mechanical seal for two relatively moving bearing surfaces comprising:
a shaft having a stepped outer surface and a radially outwardly extending shoulder formed on the outer surface; a first bearing surface formed on one of a rotatable annular element and a stationary annular element, the rotatable annular element adapted to rotate with said shaft and the stationary element adapted to militate against rotation with said shaft; a second bearing surface formed on the other of the rotatable annular element and the stationary annular element, said second bearing surface being in juxtaposed relation to said first bearing surface; an annular retainer disposed on the outer surface of said shaft and abutting the shoulder of said shaft, said retainer having one section for fixedly retaining the rotatable annular element on the outer surface of said drive shaft; a spring member disposed between said retainer and the rotatable annular element for urging the rotatable annular element towards the stationary annular element to engage said first bearing surface and said second bearing surface; a plurality of spaced apart cavities formed in at least one of said first bearing surface and said second bearing surface; and a dry lubricant disposed in said cavities to provide lubrication between said first bearing surface and said second bearing surface.
- 13. The mechanical seal according to claim 12, wherein said cavities are cylindrical.
- 14. The mechanical seal according to claim 13, wherein said cavities are arranged in annular array.
- 15. The mechanical seal according to claim 14, including at least one concentrically disposed annular groove.
- 16. The mechanical seal according to claim 12, wherein said first bearing surface is formed of graphite.
- 17. The mechanical seal according to claim 16, wherein said second bearing surface is formed of silicon carbide.
- 18. The mechanical seal according to claim 17, wherein said lubricant is molybdenum disulfide.
- 19. A variable displacement swash plate type compressor comprising:
a cylinder block having a plurality of cylinders arranged radially therein; a plurality of pistons, one of said pistons reciprocatively disposed in each of the cylinders of said cylinder block; a cylinder head attached to said cylinder block; a crankcase attached to said cylinder block to define a crank chamber; a drive shaft having an outer surface, said drive shaft rotatably supported by said crankcase and said cylinder block; a swash plate adapted to be driven by said drive shaft and adapted to reciprocatively move said pistons, said swash plate having a central aperture for receiving said drive shaft; a mechanical seal disposed between said crankcase and said drive shaft, said mechanical seal further comprising:
a first bearing surface formed on one of a rotatable annular element and a stationary annular element, the rotatable annular element adapted to rotate with said drive shaft and the stationary element adapted to be received by and held stationary with respect to said drive shaft by said crankcase; a second bearing surface formed on the other of the rotatable annular element and the stationary annular element, said second bearing surface being in juxtaposed relation to said first bearing surface; a groove formed in at least one of said first bearing surface and said second bearing surface; and a lubricant disposed in said groove to provide lubrication between said first bearing surface and said second bearing surface.
- 20. The compressor according to claim 19, wherein said drive shaft includes a radially outwardly extending shoulder formed on the outer surface.
- 21. The compressor according to claim 20, further comprising:
an annular retainer disposed on the outer surface of said drive shaft and abutting the shoulder of said drive shaft, said retainer having one section for fixedly retaining the rotatable annular element on the outer surface of said drive shaft; and a spring member disposed between said retainer and the rotatable annular element for urging the rotatable annular element towards the stationary annular element to engage said first bearing surface and said second bearing surface.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is a continuation of U.S. patent application Ser. No. 09/748,543, filed Dec. 26, 2000, hereby incorporated herein by reference.
Continuations (1)
|
Number |
Date |
Country |
Parent |
09748543 |
Dec 2000 |
US |
Child |
10224755 |
Aug 2002 |
US |