Claims
- 1. A filter arrangement comprising a fitting including a portion having a non-reentrant shape and a filter assembly mounted to the fitting, the filter assembly including a filter and an end cap mounted to the filter and having an end cap wall defining a bore, the end cap being expandable to a first size at a first predetermined temperature wherein the bore is large enough to accept the non-reentrant portion of the fitting and being contractible to a second size at a second predetermined temperature wherein the wall of the end cap is sealed tightly about the non-reentrant portion of the fitting.
- 2. The filter arrangement of claim 1, wherein one of the end cap and the non-reentrant portion of the fitting is fabricated from a polymeric material and the other of the end cap and the non-reentrant portion of the fitting is fabricated from a metallic material.
- 3. The filter arrangement of claim 2, wherein the bore of the end cap has a cylindrical shape along an axis of the bore where the bore wall is sealed to the fitting.
- 4. The filter arrangement of claim 3, wherein the portion of the fitting having the non-reentrant shape extends outward to a substantially flat annular surface.
- 5. The filter arrangement of claim 4, further comprising a housing assembly including a housing chamber having an aperture communicating with the fitting, and wherein the filter assembly is disposed in the housing chamber in a flow path defined by the aperture.
- 6. The filter arrangement of claim 5, wherein the portion of the fitting having the non-reentrant shape has an outer diameter greater than the inner diameter of the bore of the end cap before the fitting is disposed in the bore, the end cap and the fitting being joined to one another by thermal expansion and contraction of at least one of the end cap and the fitting to create a thermal interference fit for providing a leak tight seal between the filter assembly and the fitting and securing the filter assembly to the fitting.
- 7. The filter arrangement of claim 6, wherein the filter assembly further includes a blind end cap mounted to the filter.
- 8. The filter arrangement of claim 5, wherein a portion of the fitting has the non-reentrant shape and the non-reentrant portion extends outward to form a spherical surface.
- 9. The filter arrangement of claim 1, wherein at least one of the end cap and fitting is fabricated from a material that thermally expands and contracts.
- 10. The filter arrangement of claim 9, wherein the material includes a polymeric material.
- 11. The filter arrangement of claim 9 wherein the material includes a metallic material.
- 12. The filter arrangement of claim 1, further comprising a housing assembly including a housing chamber having an aperture communicating with the fitting, and wherein the filter assembly is disposed in the housing chamber in a flow path defined by the aperture.
- 13. The filter arrangement of claim 12, wherein the portion of the fitting having a non-reentrant shape has an outer diameter greater than the inner diameter of the bore of the end cap before the fitting is disposed in the bore, the end cap and the fitting being joined to one another by thermal expansion and contraction of at least one of the end cap and the fitting to create a thermal interference fit for providing a leak tight seal between the filter assembly and the fitting and securing the filter assembly to the fitting.
- 14. The filter arrangement of claim 1, wherein the bore of the end cap has a cylindrical shape along an axis of the bore where the bore wall is sealed to the fitting.
- 15. The filter arrangement of claim 1, wherein the bore wall comprises a mating annular recess which sealably engages the non-reentrant portion of the fitting.
- 16. The filter arrangement of claim 1, wherein the portion of the fitting having the non-reentrant shape extends outward to a substantially flat annular surface.
- 17. The filter arrangement of claim 1, wherein the portion of the fitting having the non-reentrant shape extends outward to form a spherical surface.
- 18. A filter arrangement comprising:
- a fitting, and
- a filter assembly including an end cap having a wall defining a bore, the fitting and the wall of the bore being fitted by thermal expansion and contraction under elastic stress to one another, wherein at least one of the fitting and the wall have a non-reentrant shape shaped to resist axial movement of the fitting within the bore and axially secure and seal the filter assembly to the fitting.
- 19. The filter arrangement of claim 18, wherein one of the end cap and the non-reentrant portion of the fitting is fabricated from a polymeric material and the other of the end cap and the non-reentrant portion of the fitting is fabricated from a metallic material.
- 20. The filter arrangement of claim 19, wherein the bore of the end cap has a cylindrical shape along an axis of the bore where the bore wall is sealed to the fitting.
- 21. The filter arrangement of claim 20, wherein a portion of the fitting has the non-reentrant shape and the non-reentrant portion extends outward to a substantially flat annular surface.
- 22. The filter arrangement of claim 21, further comprising a housing assembly including a housing chamber having an aperture communicating with the fitting, and wherein the filter assembly is disposed in the housing chamber in a flow path defined by the aperture.
- 23. The filter arrangement of claim 22, wherein the fitting comprises a portion having the non-reentrant shape for engagement with the bore of the end cap and wherein the non-reentrant portion has an outer diameter greater than the inner diameter of the bore of the end cap before the end cap is fitted to the fitting, the end cap and the fitting creating a thermal interference fit for providing a leak tight seal between the filter assembly and the fitting and securing the filter assembly to the fitting.
- 24. The filter arrangement of claim 23, wherein the filter assembly further includes a blind end cap mounted to the filter.
- 25. The filter arrangement of claim 18, wherein at least one of the end cap and fitting is fabricated from a material that thermally expands and contracts.
- 26. The filter arrangement of claim 25, wherein the material includes a polymeric material.
- 27. The filter arrangement of claim 25, wherein the material includes a metallic material.
- 28. The filter arrangement of claim 18, further comprising a housing assembly including a housing chamber having an aperture communicating with the fitting, and wherein the filter assembly is disposed in the housing chamber in a flow path defined by the aperture.
- 29. The filter arrangement of claim 28, wherein the fitting comprises a portion having the non-reentrant shape for engagement with the bore of the end cap and wherein the non-reentrant portion has an outer diameter greater than the inner diameter of the bore of the end cap before the end cap is fitted to the fitting, the end cap and the fitting creating a thermal interference fit for providing a leak tight seal between the filter assembly and the fitting and securing the filter assembly to the fitting.
- 30. The filter arrangement of claim 18, wherein the bore of the end cap has a cylindrical shape along an axis of the bore where the bore wall is sealed to the fitting.
- 31. The filter arrangement of claim 18, wherein the bore wall comprises a mating annular recess which sealably engages the non-reentrant portion of the fitting.
- 32. The filter arrangement of claim 18, wherein a portion of the fitting has the non-reentrant shape and the non-reentrant portion extends outward to a substantially flat annular surface.
- 33. A filter assembly arrangement comprising, in combination:
- a housing assembly comprising a housing chamber having at least two apertures defining a flow path therethrough, the housing assembly further comprising at least one extension disposed within the housing chamber at one of the apertures, the extension having a non-reentrant shaped portion which extends into the housing chamber and an internal bore through which flow proceeds, the non-reentrant shaped portion of the extension being defined by an outer diameter, and
- a filter assembly comprising a filter material and at least one end cap, the end cap including a substantially annularly shaped bore defined by a wall having an inner diameter, the inner diameter of the bore wall being smaller than the outer diameter of the non-reentrant shaped portion of the extension at ambient temperatures when the non-reentrant shaped portion is not disposed within the end cap bore,
- the filter assembly being disposed within the housing chamber in the flow path, the non-reentrant shaped portion being disposed within the end cap bore during use, the extension and the ends cap being joined to one another by thermal expansion and contraction such that there is an interference between the inner diameter and the outer diameter that induces stress in the end cap, the end cap bore and the non-reentrant shaped portion of the extension being sealed to one another under elastic stress at ambient temperatures so that the end cap bore fits tightly to the non-reentrant shaped portion without the presence of a sealing member.
- 34. The filter assembly arrangement of claim 33 wherein the substantially annularly shaped portion of the extension is of a non-reentrant shape.
- 35. The filter assembly arrangement of claim 34 comprising an annular projection along an outer annular surface of the extension.
- 36. The filter assembly arrangement of claim 35 wherein the end cap comprises an annular recess along the inner diameter of the annular end cap bore, the annular projection being disposed within the annular recess.
- 37. The filter assembly arrangement of claim 34 wherein the annular surface bevels outward to a substantially flat annular surface.
- 38. The filter assembly arrangement of claim 34 wherein the annular surface bevels outward to form a spherical section.
- 39. The filter assembly arrangement of claim 33 wherein the end cap comprises a polymeric material.
- 40. The filter assembly arrangement of claim 39 wherein the polymeric material comprises TEFLON.RTM. PFA.
- 41. The filter assembly arrangement of claim 19 wherein the substantially annularly shaped portion of the extension is metal.
- 42. The filter assembly arrangement of claim 39 wherein the substantially annularly shaped portion of the extension is stainless steel.
- 43. The filter assembly arrangement as claimed in claim 33 wherein the annularly shaped portion of the extension comprises a fitting coupled to one of the apertures.
- 44. The filter assembly arrangement as claimed in claim 43 wherein the end cap bore and the fitting are engaged by raising the temperature of the end cap to facilitate the placement of the end cap bore over the fitting and returning the temperature of the end cap to ambient temperature to provide a thermally contracted seal.
- 45. The filter assembly arrangement as claimed in claim 43 wherein the end cap bore and the fitting are engaged by lowering the temperature of the fitting to facilitate the placement of the end cap bore over the fitting and returning the temperature of the fitting to ambient temperature to provide a thermally expanded seal.
- 46. The filter assembly arrangement as claimed in claim 33 wherein the end cap bore and the substantially annularly shaped portion of the extension are engaged by raising the temperature of the end cap to facilitate the placement of the end cap bore over the substantially annularly shaped portion of the extension and returning the temperature of the end cap to ambient temperature to provide the seal.
- 47. The filter assembly arrangement as claimed in claim 33 wherein the end cap bore and the substantially annularly shaped portion of the extension are engaged by lowering the temperature of the substantially annularly shaped portion of the extension to facilitate the placement of the end cap bore over the substantially annularly shaped portion of the extension and returning the temperature of the substantially annularly shaped portion of the extension to ambient temperature to provide the seal.
- 48. The filter assembly arrangement of claim 33 wherein the outer diameter and the inner diameter are relatively dimensioned to provide maximum residual stress in at least one of the extension and the end cap for maximum shelf life of the filter arrangement.
- 49. The filter assembly arrangement of claim 33 wherein the seal between the end cap bore and the annularly shaped portion of the extension seals and secures the filter assembly to the housing assembly.
- 50. The filter assembly arrangement of claim 33 wherein the interference induces a stress in the end cap which is below the yield stress of the material from which the end cap is fabricated.
- 51. A filter arrangement comprising:
- a housing assembly including a housing chamber having an aperture and a hollow fitting extending from the aperture into the housing chamber, the hollow fitting having an outer surface with a non-reentrant shape, and
- a filter assembly disposed in the housing chamber and including a filter material and an end cap connected to the filter material, the end cap having a bore with a wall, the wall being sealed tightly about the outer surface of the fitting by an interference fit at ambient temperatures, the end cap and the fitting being joined to one another by thermal expansion and contraction of at least one of the end cap and the fitting.
- 52. The filter arrangement of claim 51, wherein one of the bore wall and the non-reentrant shaped fitting comprises a polymeric material and the other of the bore wall and the non-reentrant fitting comprises a metallic material.
- 53. The filter arrangement of claim 52, wherein the bore of the end cap has a cylindrical shape along an axis of the bore where the bore wall is sealed to the fitting.
- 54. The filter arrangement of claim 53, wherein the non-reentrant shaped fitting extends outward to a substantially flat annular surface.
- 55. The filter arrangement of claim 54, wherein the filter assembly further includes a blind end cap mounted to the filter.
- 56. The filter arrangement of claim 51, wherein at least one of the end cap and hollow fitting is fabricated from a material that thermally expands and contracts.
- 57. The filter arrangement of claim 56, wherein the material includes a polymeric material.
- 58. The filter arrangement of claim 56, wherein the material includes a metallic material.
- 59. A filter arrangement as claimed in claim 51 wherein the bore wall has a recess which engages the outer surface of the fitting.
- 60. A filter arrangement as claimed in claim 51 wherein the bore wall has a constant shape along an axis of the bore where the bore wall is sealed to the fitting.
- 61. A filter arrangement as claimed in claim 51 wherein the outer surface of the fitting bulges outward from an axis of the fitting.
- 62. The filter arrangement of claim 51, wherein the non-reentrant shaped fitting has an outer diameter greater than the inner diameter of the bore of the end cap before the bore wall is sealed about the fitting.
Parent Case Info
This application is a continuation of application Ser. No. 07/888,206, filed May 26, 1992, now abandoned.
US Referenced Citations (7)
Foreign Referenced Citations (1)
Number |
Date |
Country |
2209593 |
Jul 1974 |
FRX |
Continuations (1)
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Number |
Date |
Country |
Parent |
888206 |
May 1992 |
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