Claims
- 1. A fluid-tight container for a cylindrical filter element having a disk-shaped end cap at either end of the filter element, the container comprising:
i) a first thin-walled container portion, the first container portion having a dimension sufficient to enclose at least a portion of the filter element; ii) a second thin-walled container portion, said second container portion also having a dimension sufficient to enclose at least a portion of the filter element, the first and second container portions connectable to form a fluid-tight enclosure for the filter element; iii) means integral with one of the container portions for removably coupling one of the end caps of the filter element to the one container portion; and iv) means for removably connecting the first container portion to the second container portion so as to form a fluid-tight enclosure for the filter element, wherein the filter element remains coupled to the one container portion when the first container portion is removed from the second container portion and the one container portion is inverted.
- 2. The container as in claim 1, wherein the first container portion comprises a cup-shaped body with a disc-shaped end wall, and a relatively long cylindrical sidewall projecting axially away from the end wall, and the second container portion comprises a lid of the container, and also includes a disc-shaped end wall, and a relatively short annular flange, the annular flange of the lid closely receiving the cylindrical sidewall of the body to allow the lid to be easily connected to and removed from the body.
- 3. The container as in claim 2, wherein the cylindrical sidewall includes a bead bounding an open end of the body, the flange resiliently deflecting to engage the bead and retain the lid to the body.
- 4. The container as in claim 1, wherein the means to retain includes resilient means integral with the one container portion, the resilient means resiliently deflectable to engage a portion of the filter element to retain the filter element to the one container portion.
- 5. The container as in claim 4, wherein the means to retain includes a resilient portion of the cylindrical sidewall that resiliently deforms and can engage one of the end caps of the filter element.
- 6. The container as in claim 5, wherein the cylindrical sidewall includes an annular bead or ridge that can engage and resiliently deflect around the one end cap to retain the one end cap of the filter element.
- 7. The container as in claim 4, wherein the retaining means includes one of an annular flange, bead, channel or ridge that can deformably engage and retain the one end cap of the filter element.
- 8. The container as in claim 7, wherein the retaining means is unitary with the one container portion.
- 9. The container as in claim 4, wherein the means to retain includes an annular flange integral with a disk-shaped end wall of the first container portion and projecting internally of the first container portion, the annular flange including a deformable portion engageable with a portion of one end cap of the filter element to retain the filter element to the first container portion.
- 10. The container as in claim 9, wherein the deformable portion of the annular flange includes an annular catch projecting radially outward from the annular flange at a distal inner end of the annular flange.
- 11. The container as in claim 1, wherein the first and second container portions are formed of incineratable material.
- 12. The container as in claim 1, wherein the first and second container portions have a wall thickness of between 0.015 and 0.030 inches.
- 13. A storage container for a cylindrical filter element having a disk-shaped end cap at either end of the filter element, the container comprising:
i) a first container portion comprising an imperforate cup-shaped body sufficient to enclose at least a portion of the filter element; ii) a second container portion comprising an imperforate cup-shaped lid sufficient to enclose at least a portion of the filter element, the body and lid connectable to form a fluid-tight enclosure for the filter element; iii) a resilient retaining device integral with the body for cooperating with one of the end caps of the filter element and removably coupling the filter element to the body; wherein the lid and body have cooperating structure allowing the lid to be easily attached to and removed from the body so as to form a fluid-tight enclosure for the filter element, wherein the filter element remains coupled to the body when the lid is removed from the body and the body is inverted.
- 14. The storage container as in claim 13, wherein the retaining device includes one of an annular flange, bead, channel or ridge that can deformably engage and retain the one end cap of the filter element.
- 15. The storage container as in claim 13, wherein the retaining device is unitary with the one container portion.
- 16. The storage container as in claim 13, wherein the first and second container portions are formed of incineratable material.
- 17. The storage container as in claim 13, wherein the body and lid are both thin-walled.
- 18. An assembly including a cylindrical filter element having a disk-shaped end cap at either end of the filter element, and a container for the element, the container comprising:
i) a first container portion comprising an imperforate cup-shaped body enclosing at least a portion of the filter element; ii) a second container portion comprising an imperforate cup-shaped lid also enclosing at least a portion of the filter element, the body and lid forming a fluid-tight enclosure for the filter element and disconnectable from each other so as to provide access to the filter element; and iii) a resilient retaining device integral with the body cooperating with one of the end caps of the filter element and retaining the filter element within the body; wherein the lid and body have cooperating structure allowing the lid to be easily attached to and removed from the body, wherein the filter element remains retained within the body when the lid is removed from the body and the body is inverted.
- 19. The assembly as in claim 18, wherein the retaining device includes one of an 0annular flange, bead, channel or ridge that can deformably engage and retain the one end cap of the filter element.
- 20. The assembly as in claim 19, wherein the retaining device is unitary with the first container portion.
- 21. The assembly as in claim 18, wherein the first and second container portions are formed of incineratable material.
- 22. The assembly as in claim 18, wherein the body and lid are both thin-walled.
- 23. A filter assembly including a filter element and a filter housing, said filter housing having a sidewall, a closed end and an open end, and including:
a central support core fixed to the closed end of the housing and extending toward the open end of the housing, said central support core including an internal annular step along the length of the core; an extension and locking assembly slidingly disposed within said support core, said extension and locking assembly including a bypass member closely received within the support core, and a locking member closely received within the bypass member, and positioned to urge a distal inner end of the bypass member radially outward into engagement with the support core; a main spring biasing said extension and locking assembly axially outward from the support core, wherein said extension and locking assembly is normally in an position outward from said support core when the filter element is absent from the filter housing, with said bypass member engaging the internal step on the support core to maintain the extension and locking assembly in the outer position, and said locking member is moveable relative to the bypass member to a position where the locking member allows the bypass member to disengage from the internal step and allow the extension and locking assembly to be moved inwardly into the support core into an inner position, when the filter element is located in the filter housing.
- 24. The filter assembly as in claim 23, wherein the filter element includes a ring-shaped filtration media, a first end cap sealingly bonded to a first end of the filtration media, and a second end cap sealingly bonded to a second end of the filtration media, the second end cap including an opening along the central axis of the filter element and the first end cap also including an opening along the central axis of the filter element, and a series of distinct, elongated protrusions integral with said first end cap and spaced radially outward from the opening therein, said protrusions projecting axially inward a short distance from the first end cap toward the second end cap, wherein the projections engage the locking member when the filter element is located in the filter housing to move the locking member and disengage the bypass member from the internal step.
- 25. The filter assembly as in claim 24, wherein said bypass member has an enlarged head, and said locking member has an enlarged head, the enlarged first head of the bypass member overlying the enlarged head of the locking member, said enlarged head of the bypass member having a series of openings allowing the protrusions on the first end cap of the filter element to engage the underlying head of the locking member, wherein when the filter element is located in the housing, the protrusions can extend through the openings in the head of the bypass member and engage the head of the locking member and move the locking member inward into the support core relative to the bypass member such that the distal end of the bypass member is in a position to allow the locking member to disengage from the step of the support core and also move inwardly into the support core into the inward position.
- 26. The filter assembly as in claim 24, wherein the central opening of said first end cap has a smaller diameter than said central opening of said second end cap, and said central opening of said first end cap is defined by an annular flange integral with said first end cap and projecting axially inward a short distance from said first end cap toward said second end cap and terminating at a point closer to said first end cap than said second end cap, said annular flange spaced radially inward from the ring of filtration media; and said protrusions are spaced radially outward from said annular flange between said flange and said ring of filtration media.
- 27. The filter assembly as in claim 23, wherein the main spring outwardly surrounds the support core, and extends between an outer shoulder along the length of the support core and an enlarged head on the locking member.
- 28. The filter assembly as in claim 23, wherein the bypass member has elongated fingers projecting inwardly into the support core, surrounding the locking member, the locking member engaging the distal ends of the fingers when the extension and locking assembly is in the outer position, and urging the distal ends radially outward into engagement with the support core.
- 29. The filter assembly as in claim 28, wherein the locking member includes an annular distal inner end, said annular distal inner end positioned in engagement with the distal ends of the fingers when the extension and locking assembly is in the outer position.
- 30. The filter assembly as in claim 23, wherein the housing includes a body, and a cover engageable with the body to form an enclosure for the filter element, said body and cover having cooperating structure allowing the cover to be removeably attached to the housing body, wherein when said extension and locking assembly is in the outer position, the extension and locking assembly has an axial length which interferes with the cover and prevents the cover from being attached to the body, and when said extension and locking assembly is in the inward position, the cover can be attached to the body.
- 31. The filter assembly as in claim 23, wherein said filter element includes a bypass valve, and a bypass spring urging the bypass valve outwardly against the central opening in the one end cap to prevent fluid flow therethrough, said bypass valve moveable away from the opening in response to an overpressure condition in the housing to allow fluid to flow through the opening in the one end cap.
- 32. The filter assembly as in claim 31, wherein the bypass spring extends between a valve head of the bypass valve and an inner shoulder in the locking member.
- 33. A filter assembly including a filter element and a filter housing, said filter housing having a sidewall, a closed end and an open end, and including:
a central support core fixed to the closed end of the housing and extending toward the open end of the housing, said central support core including a step along the length of the core; an extension and locking assembly slidingly disposed relative to said support core, said extension and locking assembly including an outer end with an engagement surface and an inner end; a main spring biasing said extension and locking assembly axially outward from the support core, wherein said extension and locking assembly is normally in an extended position outward from said support core when the filter element is absent from the filter housing, with said inner end engaging the step on the support core to maintain the extension and locking assembly in the outward position, and said engagement surface of the extension and locking assembly is engageable by the element to allow the extension and locking assembly to disengage from the internal step and allow the extension and locking assembly to be moved inwardly into the support core into an inner position when the filter element is located in the filter housing.
- 34. The filter assembly as in claim 33, wherein said extension and locking assembly includes locking means engaging the step in the support core when the extension and locking assembly is in the outer position, said locking means disengaging from the step when the engagement surface of the extension and locking assembly is engaged.
- 35. The filter assembly as in claim 33, wherein the filter element includes a ring-shaped filtration media, a first end cap sealingly bonded to a first end of the filtration media, and a second end cap sealingly bonded to a second end of the filtration media, the second end cap including an opening along the central axis of the filter element and the first end cap also including an opening along the central axis of the filter element, and a series of distinct, elongated protrusions integral with said first end cap and spaced radially outward from the opening therein, said protrusions projecting axially inward a short distance from the first end cap toward the second end cap, wherein the projections engage the locking member when the filter element is located in the filter housing to move the locking member and disengage the bypass member from the internal step.
- 36. The filter assembly as in claim 35, wherein said bypass member has an enlarged head, and said locking member has an enlarged head, the enlarged first head of the bypass member overlying the enlarged head of the locking member, said enlarged head of the bypass member having a series of openings allowing the protrusions on the first end cap of the filter element to engage the underlying head of the locking member, wherein when the filter element is located in the housing, the protrusions can extend through the openings in the head of the bypass member and engage the head of the locking member and move the locking member inward into the support core relative to the bypass member such that the distal end of the bypass member is in a position to allow the locking member to disengage from the step of the support core and also move inwardly into the support core into the inward position.
- 37. The filter assembly as in claim 33, wherein the main spring outwardly surrounds the support core, and extends between an outer shoulder along the length of the support core and an enlarged head on the locking member.
- 38. The filter assembly as in claim 33, wherein the housing includes a body, and a cover engageable with the body to form an enclosure for the filter element, said body and cover having cooperating structure allowing the cover to be removeably attached to the housing body, wherein when said extension and locking assembly is in the outer position, the extension and locking assembly has an axial length which interferes with the cover and prevents the cover from being attached to the body, and when said extension and locking assembly is in the inward position, the cover can be attached to the body.
RELATED CASES
[0001] This application is a divisional of U.S. patent application Ser. No. 09/584,972, filed Jun. 1, 2000, the disclosure of which is incorporated herein by reference.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09584972 |
Jun 2000 |
US |
Child |
10371751 |
Feb 2003 |
US |