Claims
- 1. An impact resistant compact condenser comprising a plastic shell having two side walls enclosing at least one heat transfer disc having generally smooth side surfaces, said at least one heat transfer disc being disposed between said side walls dividing said shell into at least one cooling cell and at least one unobstructed vapor cell, means for retaining said disc in sealed abutment against said end walls of said side walls, each of said cells having an inlet port and an outlet port, said outlet port of said vapor cell being positioned so as to allow gravity flow of condensate therefrom.
- 2. A condenser according to claim 1 wherein said heat transfer disc is made from a corrosive resistant material.
- 3. A condenser according to claim 1 wherein said heat transfer disc has a coating of a chemically resistant material on its vapor cell side.
- 4. A condenser according to claim 3 wherein said heat transfer disc has a coating of a chemically resistant material on its cooling cell side.
- 5. A condenser according to claim 1 wherein said heat transfer disc is made of a graphite material with a chemically resistant, non-contaminating plastic coating on its vapor cell side and a chemically resistant plastic coating on its cooling cell side.
- 6. A condenser as defined in claim 1 when wherein said disc is made of a corrosive resistant metallic material that has a chemically resistant, non-contaminating plastic coating on its vapor cell side, and a chemically resistant plastic coating on its cooling side.
- 7. A condenser according to claim 1 wherein said disc is made of a metallic material having a corrosion resisting glass or glass-ceramic coating on all of its surfaces.
- 8. A condenser according to claim 1 wherein said disc is made of a corrosion resistant glass or glass ceramic material.
- 9. A condenser according to claim 1 wherein said disc is made of a corrosion resistant matallic material.
- 10. A condenser according to claim 1 wherein said plastic shell is readily separable for insertion or removal of said different heat transfer disc.
- 11. A condenser according to claim 3 wherein said coating has a sufficient thickness so as to provide minimal resistance to heat transfer but of sufficient thickness to resist vapor or liquid penetration into said disc.
- 12. A condenser according to claim 5 wherein each of said coatings have a sufficient thickness so as to provide minimal resistance to heat transfer but of sufficient thickness to resist vapor or liquid penetration into said disc.
- 13. A condenser according to claim 6 wherein each of said coatings have a sufficient thickness so as to provide minimal resistance to heat transfer but of sufficient thickness to resist vapor or liquid penetration into said disc.
- 14. A condenser according to claim 7 wherein said coating has a sufficient thickness so as to provide minimal resistance to heat transfer but of sufficient thickness to resist vapor or liquid penetration into said disc.
- 15. A condenser according to claim 1 wherein said means for retaining said heat transfer disc in sealed abutment against said side walls is a corrosion resistant compression ring heat shrunk fit around the outer circumferential surface of said side walls.
- 16. A condenser according to claim 1 wherein said means for retaining said heat transfer disc in sealed abutment comprises flanges formed on each of said side walls which are secured together by a clamping ring permanently secured around said flange.
- 17. A condenser as defined in claim 3 wherein said coating on the vapor cell side of the heat transfer disc is a film selected from the fluoroplastics, polyolefins, or other chemically resistant anti-contaminating plastic materials.
- 18. A condenser according to claim 4 wherein said coating on cooling cell side of said heat transfer disc is a film selected from the fluoroplastics, polyolefins, polysuffones, epoxies, phenolies, or other chemically resistant polymers of the same kind as vapor cell or different.
- 19. A condenser as defined in claim 6 wherein said corrosion resistant matallic material disc is an aluminum metal or alloy, a stainless steel, or other stainless corrosion resistant metals and alloys.
- 20. A condenser as defined in claim 8 wherein said glass or glass-ceramic disc is of a borosilicate glass.
- 21. A condenser as defined in claim 1 wherein said plastic shell walls are of a fluoroplastic, or only the shell wall on the vapor cell side, is a fluoroplastic or other chemically resistant, anti-contaminating plastic material, and the shell wall on the water cooling cell side is of the same plastic or a different kind selected from the group polyolefins, polysulfones, polycarbonates, polyetherimides, polyimides, polyetheretherketones, polyphenylene sulfides, polyether sulfones, polyarylsulfones, phenolics, or nylons.
- 22. A condenser as defined in claim 15 wherein said compression ring is one that is readily removed or applied permitting said plastic shell to be disassembled for the insertion of a different heat transfer disc or a different sidewall.
- 23. A condenser as defined in claim 1 wherein said plastic side walls each have a flange for securing said heat transfer disc in sealed abutment to said side walls.
- 24. A condenser according to claim 23 further comprising nuts and bolts, permitting said plastic shell to be disassembled for the insertion of a different heat transfer disc or different sidewalls.
- 25. A condenser as defined in claim 15 where two heat transfer discs are secured to said plastic shell by means of two permanently assembled compression shrink rings.
- 26. A condenser as defined in claim 25 wherein said shell further comprising a circumferential ring between said side walls, two heat transfer discs are provided in spaced apart relationship to form two cooling cells and one vapor cell and are secured to said plastic shell by means of two permanently assembled clamping rings.
- 27. A condenser as defined in claim 22 wherein two heat transfer discs are secured to said plastic shell by means of two compression rings that are readily removed or applied.
- 28. A condenser as defined in claim 23 where two heat transfer discs are used with flanged shell and secured by means of nuts and bolts permitting the condenser shell to be separable.
- 29. A condenser as defined in claim 15 wherein means for sealing and securing said heat transfer disc to said plastic shell is by joining said side walls of said shell by plastic welding.
- 30. A condenser as defined in claim 1 wherein said plastic shell is divided by two heat transfer discs into a center vapor cell with a cooling cell on each side.
- 31. A condenser as defined in claim 23 wherein said flanges are sealed and secured to said heat transfer disc by two clamping rings fastened by nuts and bolts above periphery of said heat transfer disc.
- 32. A condenser as defined in claim 1 wherein said condenser is joined in series with a second or third condenser by
- 33. A condenser according to claim 1 wherein sides of said heat transfer disc are substantially parallel to said side walls of said shell.
- 34. An impact resistant compact condenser comprising a plastic shell having two side walls enclosing at least one heat transfer disc, said at least one heat transfer disc having substantially flat sides being disposed between said side walls dividing said shell into at least one unobstructed cooling cell and at least one unobstructed vapor cell, means for retaining said disc in sealed abutment against said end walls of said side walls, each of said cells having an inlet port and an outlet port, said outlet port of said vapor cell being positioned so as to allow gravity flow of condensate therefrom.
- 35. An impact resistant compact condenser comprising a plastic shell having two side walls enclosing at least one heat transfer disc, said at least one heat transfer disc having substantially flat and parallel sides being disposed between said side walls dividing said shell into at least one unobstructed cooling cell and at least one unobstructed vapor cell, means for retaining said disc in sealed abutment against said end walls of said side walls, each of said cells having an inlet port and an outlet port, said outlet port of said vapor cell being disposed so as to allow gravity flow of condensate therefrom, said heat transfer disc is made from a corrosive resistant material.
- 36. An impact resistant compact condenser comprising a plastic shell having two side walls enclosing at least one heat transfer disc, said at least one heat transfer disc having substantially flat side walls which aligned substantially parallel to said side walls of said shell being disposed between said side walls dividing said shell into at least one unobstructed cooling cell and at least one unobstructed vapor cell, means for retaining said disc in sealed abutment against said end walls of said side walls, each of said cells having an inlet port and an outlet port, said outlet port of said vapor cell being positioned so as to allow gravity flow of condensate therefrom, the side wall of said heat transfer disc facing said vapor cell has a coating of a corrosive resistant material.
Parent Case Info
This is a continuation-in-part of application filed Feb. 20, 1985, Ser. No. 703,344 now abandoned.
US Referenced Citations (3)
Foreign Referenced Citations (1)
Number |
Date |
Country |
102633 |
Apr 1899 |
DE2 |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
703344 |
Feb 1985 |
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