Claims
- 1. A submersible gas compressor comprising:a ceramic high pressure piston in contact with a ceramic sleeve operating independent of a lubricating liquid; a drive piston mounted to said ceramic high pressure piston such that movement of said drive piston simultaneously moves said ceramic high pressure piston; and a crank in mechanical connection with said drive piston.
- 2. The compressor of claim 1 further comprising a surrounding thermal immersion tank comprising a liquid heat transfer fluid.
- 3. The compressor of claim 1 further comprising a compliant coupling between said ceramic high pressure piston and said drive piston.
- 4. The compressor of claim 1 wherein said crank has a double hung shaft operating independent of cantilever motion.
- 5. The compressor of claim 1 wherein the movement of said drive piston cycles between 600 and 800 cycles per minute.
- 6. A submersible gas compressor comprising:a ceramic high pressure piston in contact with a ceramic sleeve operating independent of a lubricating liquid; a drive piston mounted to said ceramic high pressure piston such that movement of said drive piston simultaneously moves said ceramic high pressure piston; a crank in mechanical connection with said drive piston; and a surrounding thermal immersion tank comprising a liquid heat transfer fluid, wherein the liquid heat transfer fluid is an aqueous solution.
- 7. The compressor of claim 6 further comprising a compliant coupling between said ceramic high pressure piston and said drive piston.
- 8. The compressor of claim 6 wherein said crank has a double hung shaft operating independent of cantilever motion.
- 9. The compressor of claim 6 wherein said ceramic high pressure piston contacts said ceramic sleeve independent of a lubricating liquid.
- 10. The compressor of claim 6 wherein the reciprocating movement of said drive piston cycles between 600 and 800 cycles per minute.
- 11. A submersible gas compressor comprising:a ceramic high pressure piston in contact with a ceramic sleeve wherein the compressor operates continuously at less than 130° F.; a drive piston mounted to said ceramic high pressure piston such that movement of said drive piston simultaneously moves said ceramic high pressure piston; and a crank in mechanical connection with said drive piston.
- 12. A submersible gas compressor comprising:a ceramic high pressure piston in contact with a ceramic sleeve operating independent of a lubricating liquid; a drive piston mounted to said ceramic high pressure piston such that movement of said drive piston simultaneously moves said ceramic high pressure piston; a crank in mechanical connection with said drive piston; and a surrounding thermal immersion tank comprising a liquid heat transfer fluid, wherein the compressor operates continuously at less than 130° F.
- 13. A submersible gas compressor comprising:a ceramic high pressure piston in contact with a ceramic sleeve; a drive piston mounted to said ceramic high pressure piston such that movement of said drive piston simultaneously moves said ceramic high pressure piston; a crank in mechanical connection with said drive piston; and a thermal immersion tank comprising a liquid heat transfer fluid.
RELATED APPLICATIONS
This application claims the priority of U.S. Provisional Application No. 60/235,429 filed Sep. 26, 2000, and is hereby incorporated by reference.
US Referenced Citations (19)
Foreign Referenced Citations (2)
Number |
Date |
Country |
3437999 |
Apr 1986 |
DE |
57079277 |
May 1982 |
JP |
Non-Patent Literature Citations (4)
Entry |
Abstract, Japanese Patent No. JP359160515A published Sep. 11, 1984. |
Abstract, Japanese Patent No. JP408294613A published Nov. 12, 1996. |
Printout from www.rixindustries.com website entitled “Bottle Filling Oxygen Compressors”, pp. 1-5. |
Printout from www.rixindustries.com website entitled “Model 2V3B”, 1 page. |
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/235429 |
Sep 2000 |
US |