Filter housing
US-2018250617-A1 · Sep 6, 2018 · US
US11241644B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11241644-B2 |
| Application number | US-202016846574-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 13, 2020 |
| Priority date | Apr 13, 2020 |
| Publication date | Feb 8, 2022 |
| Grant date | Feb 8, 2022 |
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An adapter for use in a filter device is provided, the adapter having a downwardly slanted inner wall including two or more hollow passageways, and a central fluid flow port, wherein the adapter can be welded to a filter device housing head.
Opening claim text (preview).
The invention claimed is: 1. A filter device comprising: (a) a filter comprising a hollow cylindrical filter element comprising a porous medium, arranged in a filter housing comprising an outer cage, an inner core, a first end cap, and a second end cap, wherein the outer cage and inner core are sealed to the first end cap and the second end cap with the filter element between the outer cage and the inner core, the second end cap comprising a closed end cap and the first end cap comprising an open end cap including a hollow projection comprising a filter outlet, the hollow projection having an external wall; (b) a filter device housing comprising a head including an inlet port and an outlet port, and a bowl having an interior for receiving the filter; (c) an adapter comprising a hollow body having: (i) a top portion having a top portion tapered inner diameter, wherein the top portion tapered inner diameter has a maximum diameter and a minimum diameter; (ii) a bottom portion; and (iii) a central fluid flow port passing through the hollow body, the central fluid flow port having a first end and a second end, an inside wall and an outside wall, the central fluid flow port being in fluid communication with the filter outlet; the top portion including a downwardly slanted inner wall providing the top portion tapered inner diameter, the downwardly slanted inner wall being connected to the first end of the central fluid flow port at the minimum diameter of the top portion tapered inner diameter, the downwardly slanted inner wall having an upper surface and two or more hollow passageways passing through the upper surface of the downwardly slanted inner wall, each of the two or more hollow passageways including an upper passageway end and a lower passageway end, the upper surface of the downwardly slanted inner wall including the upper passageway ends; the bottom portion including a downwardly extending hollow tubular element including the second end of the central fluid flow port, the hollow tubular element providing the inside wall and outside wall of the central fluid flow port; the bottom portion including an annular channel surrounding the downwardly extending hollow tubular element, the annular channel comprising a base, an outer side wall, and an inner side wall comprising the outside wall of the central fluid flow port, the base of the annular channel including the lower passageway ends of the two or more hollow passageways; wherein the outer side wall of the annular channel seals against the external wall of the hollow projection comprising the filter outlet, and the adapter is welded to the filter device housing head and to the top portion of the adapter; and wherein a fluid flow path passes though the inlet port, the outer cage, the porous medium, the filter outlet, the adapter central fluid flow port, and the outlet port. 2. The filter device of claim 1 , wherein the filter device housing head and the adapter each comprise a fluoropolymer. 3. The filter device of claim 1 , wherein the first end cap comprises polypropylene or polyethylene. 4. The filter device of claim 1 , wherein the two or more hollow passageways are slanted with respect to a horizontal axis of the adapter. 5. An adapter for use in a filter device having a filter outlet comprising: a hollow body having: (i) a top portion having a top portion tapered inner diameter, wherein the top portion tapered inner diameter has a maximum diameter and a minimum diameter; (ii) a bottom portion; and (iii) a central fluid flow port passing through the hollow body, the central fluid flow port having a first end and a second end, an inside wall and an outside wall, the central fluid flow port being in fluid communication with the filter outlet; the top portion including a downwardly slanted inner wall providing the top portion tapered inner diameter, the downwardly slanted inner wall being connected to the first end of the central fluid flow port at the minimum diameter of the top portion tapered inner diameter, the downwardly slanted inner wall having an upper surface and two or more hollow passageways passing through the upper surface of the downwardly slanted inner wall, each of the two or more hollow passageways including an upper passageway end and a lower passageway end, the upper surface of the downwardly slanted inner wall including the upper passageway ends; the bottom portion including a downwardly extending hollow tubular element including the second end of the central fluid flow port, the hollow tubular element providing the inside wall and outside wall of the central fluid flow port; the bottom portion including an annular channel surrounding the downwardly extending hollow tubular element, the annular channel comprising a base, an outer side wall, and an inner side wall comprising the outside wall of the central fluid flow port, the base of the annular channel including the lower passageway ends of the two or more hollow passageways. 6. The adapter of claim 5 , wherein the two or more hollow passageways are slanted with respect to a horizontal axis of the adapter. 7. A method of filtering fluid, the method comprising: passing the fluid through the filter device of claim 1 . 8. The method of claim 7 , wherein the fluid is used in the microelectronics industry. 9. A method of cleaning a filter, the method comprising: passing a cleaning fluid through the filter device of claim 1 , and, passing deionized water through the filter device, wherein the cleaning fluid is flushed from the filter device. 10. The filter device of claim 2 , wherein the first end cap comprises polypropylene or polyethylene. 11. The filter device of claim 2 , wherein the two or more hollow passageways are slanted with respect to a horizontal axis of the adapter. 12. The filter device of claim 3 , wherein the two or more hollow passageways are slanted with respect to a horizontal axis of the adapter. 13. The filter device of claim 10 , wherein the two or more hollow passageways are slanted with respect to a horizontal axis of the adapter. 14. A method of filtering fluid, the method comprising: passing the fluid through the filter device of claim 2 . 15. A method of filtering fluid, the method comprising: passing the fluid through the filter device of claim 3 . 16. A method of filtering fluid, the method comprising: passing the fluid through the filter device of claim 4 . 17. A method of filtering fluid, the method comprising: passing the fluid through the filter device of claim 10 . 18. A method of filtering fluid, the method comprising: passing the fluid through the filter device of claim 11 . 19. A method of filtering fluid, the method comprising: passing the fluid through the filter device of claim 12 . 20. A method of filtering fluid, the method comprising: passing the fluid through the filter device of claim 13 .
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