Claims
- 1. A coalescing assembly for removing entrained material from a gas stream, the coalescer assembly comprising
a coalescing element comprised of one or more layers of compacted high temperature polyamide fibers.
- 2. The coalescing assembly described in claim 1, further comprising a support structure for the coalescing element, whereby the coalescing element is maintained in its compacted state and oriented so that the gas stream flows through the coalescing element.
- 3. The coalescing assembly described in claim 2, wherein the coalescing element is cylindrical, and the support structure comprises a cylindrical inner sleeve and a cylindrical outer sleeve, the coalescing element being contained between the inner and outer sleeves.
- 4. The coalescing assembly described in claim 2, wherein the support structure is comprised of metal fibers felted into sheets and vacuum sintered to form diffusion bonds between the fibers, whereby the fibers join in a semi-rigid matrix.
- 5. The coalescing assembly described in claim 4, wherein the metal fibers are comprised of stainless steel.
- 6. The coalescing assembly described in claim 1, wherein each layer of the coalescing element is comprised of a polyamide having amide groups separated by meta-phenylene groups, whereby the amide groups are attached to the phenyl ring at the 1 and 3 positions.
- 7. The coalescing assembly described in claim 6, wherein each layer of polyamide fibers has an uncompacted thickness of 0.25″.
- 8. The coalescing assembly described in claim 1, wherein the coalescing element is comprised of at least three layers of felt.
- 9. The coalescing assembly described in claim 1, wherein the polyamide fibers are comprised of a polyamide having amide groups separated by meta-phenylene groups, whereby the amide groups are attached to the phenyl ring at the 1 and 3 positions.
- 10. The coalescer assembly described in claim 9, wherein the overall thickness of the compacted polyamide fibers is at least 0.25″.
- 11. An oil coalescer for removing entrained oils from a gas stream, the coalescer assembly comprising
a cylindrical coalescing element comprised of compacted polyamide fibers; a support structure comprised of a cylindrical inner sleeve and a concentric cylindrical outer sleeve enclosing the coalescing element therebetween, the inner sleeve defining an inner area and having openings allowing fluid communication between the coalescing element and the inner area; a cylindrical shell enclosing the inner and outer sleeves and the coalescing element; a top cap enclosing an upper portion of the cylindrical shell; a bottom cap with drain holes, the bottom cap enclosing a lower portion of the cylindrical shell; and, a diverging channel in fluid communication with the inner area, the diverging channel directing the gas stream through an orifice in the top cap into the inner area.
- 12. The oil coalescer described in claim 11, wherein the polyamide fibers are comprised of a polyamide having amide groups separated by meta-phenylene groups, whereby the amide groups are attached to the phenyl ring at the 1 and 3 positions.
- 13. The oil coalescer described in claim 11, wherein the outer shell has lower holes only along the lower portion of the shell.
- 14. The oil coalescer described in claim 13, wherein the lower holes wrap around the bottom cap to also function as drain holes.
- 15. An oil separator for removing entrained oils from a gas stream and returning the oils to a sump of a compressor, the oil separator comprising
an oil coalescer; an input orifice directing the gas stream to an inner area of the oil coalescer, wherein the velocity of the entering gas steam is reduced through the use of adiabatic expansion; a collection area for collecting oil removed from the gas stream by the oil coalescer; and a passage from the collection area, wherein collected oil is removed from the oil separator to prevent overflow.
- 16. The oil separator described in claim 15, wherein the oil coalescer is comprised of
a coalescing element having one or more layers of compacted polyamide or polyimide fibers, and a support structure having a cylindrical inner sleeve and a cylindrical outer sleeve, the coalescing element being contained between the inner and outer sleeves, whereby the coalescing element is maintained in its compacted state by the sleeves and oriented so that the gas stream flows through the coalescing element.
- 17. The oil separator described in claim 16, wherein the layers of the coalescing element are made of a polyamide having amide groups separated by meta-phenylene groups, whereby the amide groups are attached to the phenyl ring at the 1 and 3 positions.
- 18. The oil separator described in claim 16, wherein each layer has an uncompacted thickness of 0.25″.
- 19. The oil separator described in claim 16, wherein the overall thickness of the compacted polyamide layers is at least 0.25″.
- 20. A method of compacting a polyamide felt comprising the steps of
preparing a rectangular strip of felt by tapering the ends thereof; compacting the rectangular strip; heating the compacted rectangular strip; allowing the compacted rectangular strip to cool; assembling the compacted rectangular strip into a cylindrical assembly; compacting the cylindrical assembly; and heating the compacted cylindrical assembly.
- 21. The method described in claim 20, wherein the polyamide felt has a thickness of 0.25″.
- 22. The method described in claim 20, wherein the step of heating the rectangular strip comprises heating the rectangular strip for 4 hours at a temperature of about 250° F.
- 23. The method described in claim 20, wherein the step of heating the compacted cylindrical assembly comprises heating the compacted cylindrical assembly for 4 hours at a temperature of about 250° F.
- 24. The method described in claim 20, wherein the step of assembling the compacted rectangular strip into a cylindrical assembly comprises the steps of
wrapping the compacted rectangular strip around a cylindrical shape and rigidly maintaining the cylindrical shape.
- 25. A method for coalescing oil from a gas stream having an aerosol of oil droplets entrained therein, the gas stream flowing through a channel, the method comprising the steps of
reducing a velocity of the gas stream by adiabatic expansion by means of a diverging channel, directing the gas stream to an oil coalescer comprising a coalescing element supported by a rigid support structure, directing the gas stream through the coalescing element to remove the entrained oil droplets; collecting the removed oil droplets within the oil coalescer for removal from the channel; and allowing the purified gas flow to continue through the channel.
- 26. The method described in claim 25, wherein the coalescing element is comprised of a felt of compacted polyamide fibers.
- 27. The method described in claim 26, wherein the polyamide fibers are comprised of amide groups separated by meta-phenylene groups, whereby the amide groups are attached to the phenyl ring at the 1 and 3 positions.
GOVERNMENT RIGHTS
[0001] This invention was made in the performance of work under a government funded research and development program, F-22 ARS, under contract number F33657-91-C-0006 to Boeing Military Aircraft and is subject to the provisions of that contract. The United States Government may have certain rights to this invention.