Claims
- 1. A separator for gas under pressure, comprising:
a gas inlet; a gas outlet; and a filter including an outer layer and an inner layer defining a hollow interior of the filter, wherein the gas passes from an exterior of the filter to the interior of the filter.
- 2. The gas separator according to claim 1, wherein the outer layer is pleated.
- 3. The gas separator according to claim 1, wherein the outer layer includes a re-enforcement layer, a first particle filter layer, a coalescer layer, and a second particle filter layer.
- 4. The gas separator according to claim 3, wherein the re-enforcement layer is made of mesh screen.
- 5. The gas separator according to claim 3, wherein the first particle filter layer is made of spun bonded polyester.
- 6. The gas separator according to claim 3, wherein the coalescer layer is made of micro-borosilicated glass.
- 7. The gas separator according to claim 3, wherein the second particle filter layer is made of spun bonded polyester.
- 8. The gas separator according to claim 1, wherein the inner layer includes a center core defining the hollow interior.
- 9. The separator according to claim 8, wherein the center core is made of sintered polyethylene.
- 10. The gas separator according to claim 3, wherein the inner layer includes a center core defining the hollow interior, the second particle filter layer surrounds the center core, the coalescer layer surrounds the second particle filter layer, the first particle filter layer surrounds the coalescer layer, and the re-enforcement layer surrounds the first particle filter layer.
- 11. The separator according to claim 1, wherein the filter is cylindrically shaped, includes opposed ends, and includes a pair of end caps positioned to cover the opposed ends of the filter.
- 12. The separator according to claim 1, further including
a housing having an opening and an internal annular groove adjacent the opening; and an access cover, wherein the access cover includes:
a cover plug configured to fit within the opening; actuator cam positioned adjacent the cover plug; a plurality of idler cam plates surrounding the actuator cam, each of the plurality of idler cam plates pivotably connected to the plug cover and including exterior edges configured to cooperate with the annular groove; and a plurality of mechanisms, each of the plurality of mechanisms attached to the actuator cam and one of the plurality of idler cam plates, wherein when the cover plug is fitted within the opening, rotation of the actuator cam in a first direction or a second direction causes each of the plurality of mechanisms to push or pull, respectively, each of the plurality of idler cam plates, thereby pivoting the plurality of idler cam plates such that the exterior edges engage or disengage with the annular groove, respectively.
- 13. A method for filtering gas under pressure in a two or three stage separator, comprising the step of removing dust, particulate material, and moisture from the gas by passing the gas from the outside of a filter to an inside of the filter, wherein the filter includes a filter layer and a coalescer layer.
- 14. The method for filtering gas according to claim 13, further including the steps of sequentially:
passing the gas through a re-enforcement layer, passing the gas through a first particle filter, passing the gas through the coalescer layer, passing the gas through a second particle filter, passing the gas through a center core, and passing the gas through a hollow interior of the filter.
- 15. An access cover for use on a piping or vessel, comprising:
a cover plug configured to fit within an opening of the piping or vessel adjacent an annular groove in the piping or vessel; an actuator cam positioned adjacent the cover plug; a plurality of idler cam plates surrounding the actuator cam, each of the plurality of idler cam plates pivotably connected to the plug cover and including exterior edges configured to cooperate with the annular groove; and a plurality of mechanisms, each of the plurality of mechanisms attached to the actuator cam and one of the plurality of idler cam plates, wherein when the cover plug is fitted within the opening, rotation of the actuator cam in a first direction or a second direction causes each of the plurality of mechanisms to push or pull, respectively, each of the plurality of idler cam plates, thereby pivoting the plurality of idler cam plates such that the exterior edges engage or disengage with the annular groove, respectively.
- 16. The access cover according to claim 15, wherein the actuator cam is located at approximately a center of the cover plug.
- 17. The access cover according to claim 15, wherein:
the actuator cam includes a plurality of protrusions positioned around a perimeter of the actuator cam, each of the plurality of idler cams includes a shoulder on an interior edge of each of the plurality of idler cams, each shoulder is configured to engage a corresponding one of the plurality of protrusions to lock the access cover.
- 18. The access cover according to claim 15, further including a handle extending from the actuator cam, wherein force applied to the handle causes rotation of the actuator cam.
- 19. The access cover according to claim 18, further including a hinge assembly including:
a bracket adapted to attach to the housing; an arm pivotally attached to the bracket and attached to the handle, wherein the hinge assembly removes the access cover from within the opening and pivots the access cover away from the opening.
- 20. The access cover according to claim 19, wherein the arm includes:
a first portion pivotally attached to the bracket; and a second portion pivotally attached to the first portion and attached to the handle.
- 21. The access cover according to claim 15, further including a hinge assembly including:
a bracket adapted to attach to the housing; an arm pivotally attached to the bracket and attached to the access cover, wherein the hinge assembly removes the access cover from within the opening and pivots the access cover away from the opening.
- 22. The access cover according to claim 21, wherein the arm includes:
a first portion pivotally attached to the bracket; and a second portion pivotally attached to the first portion and attached to the access cover.
- 23. The access cover according to claim 15, further including:
a handwheel assembly attached to the access cover; and a davit supporting the handwheel and adapted to pivotally attach to the housing, wherein the handwheel assembly removes the access cover from within the opening and the davit pivots the access cover away from the opening.
- 24. The access cover according to claim 15, further including:
a bolt opening; and a safety bolt configured to mate with the bolt opening, the safety bolt including a first opening, a second opening, and a passageway extending between the first opening and the second opening, wherein when the safety bolt is fully mated with the bolt opening, the first opening is in fluid communication with the opening of the piping or vessel and the second opening is closed off by the access cover, and when the safety bolt is partially mated with the bolt opening, the first opening is in fluid communication with the opening and the second opening is open to atmosphere.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of U.S. Provisional Patent Application Serial No. 60/373,016, filed Apr. 16, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60373016 |
Apr 2002 |
US |