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Kafe 바로가기국가/구분 | United States(US) Patent 등록 |
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국제특허분류(IPC7판) |
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출원번호 | US-0591669 (2012-08-22) |
등록번호 | US-8512435 (2013-08-20) |
발명자 / 주소 |
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출원인 / 주소 |
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대리인 / 주소 |
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인용정보 | 피인용 횟수 : 3 인용 특허 : 438 |
Thermoplastic bicomponent binder fiber can be combined with other media, fibers and other filtration components to form a thermally bonded filtration media. The filtration media can be used in filter units, such as breather caps. Such filter units can be placed in the stream of a mobile fluid and ca
Thermoplastic bicomponent binder fiber can be combined with other media, fibers and other filtration components to form a thermally bonded filtration media. The filtration media can be used in filter units, such as breather caps. Such filter units can be placed in the stream of a mobile fluid and can remove a particulate and/or fluid mist load from the mobile stream. The unique combination of media fiber, bicomponent binder fiber and other filtration additives and components provide a filtration media having unique properties in filtration applications.
1. A filtration medium comprising a layer having a thickness of 0.1 to 2 mm comprising a thermally bonded nonwoven structure comprising bicomponent fibers blended with a media fiber, wherein the bicomponent fibers have a concentric sheath-core structure consisting essentially of polyester or polyami
1. A filtration medium comprising a layer having a thickness of 0.1 to 2 mm comprising a thermally bonded nonwoven structure comprising bicomponent fibers blended with a media fiber, wherein the bicomponent fibers have a concentric sheath-core structure consisting essentially of polyester or polyamide, the filtration medium having a solidity of about 2 to 25%, a basis weight of about 10 to 300 g/m2, and a compressibility of 25% or less when pressure is varied from 0.125 lb/in2 to 0.625 lb/in2. 2. The filtration medium of claim 1, wherein the bicomponent fibers consists of polyester. 3. The filtration medium of claim 2 wherein the polyester consists of polyethylene terephthalate. 4. The filtration medium of claim 1 wherein the polyamide consists of a nylon. 5. The filtration medium of claim 1 wherein the medium has solidity of less than 10%. 6. The filtration medium of claim 1 wherein the medium has basis weight of about 20 to 200 g/m2. 7. The filtration medium of claim 1 wherein the medium has permeability of about 5 to 500 ft/min. 8. The filtration medium of claim 1 wherein the medium has permeability of about 5 to 200 ft/min. 9. The filtration medium of claim 1 wherein the medium has a thickness of 0.2 to 2 mm and a compressibility of about 10 to 20% when pressure is varied from 0.125 lb/in2 to 0.625 lb/in2. 10. The filtration medium of claim 2, wherein the media fiber comprises monocomponent media fibers comprising nylon, polyolefin, polyester, cellulose or mixtures thereof. 11. The filtration medium of claim 10, wherein the media fibers comprise polyethylene terephthalate. 12. The filtration medium of claim 1, wherein the thermally bonded nonwoven structure is a sheet. 13. A filter structure comprising 2 to 100 of the sheets of claim 12. 14. The filtration structure of claim 13, comprising 4 to 100 layers. 15. The filtration medium of claim 1, further comprising a residue comprising a binder resin provided as an aqueous dispersion. 16. The filtration medium of claim 1 wherein the medium is substantially free of residue from an aqueous binder resin. 17. The filtration medium of claim 1, wherein the medium comprises: (a) about 20 to 80 wt % of the bicomponent fibers, the bicomponent fibers consisting essentially of polyester or polyamide, the fiber having a fiber diameter of about 5 to 50 micrometers and a fiber length of about 0.1 to 15 cm; and(b) about 20 to 80 wt % of the media fiber, the media fiber having a fiber diameter of about 0.1 to 30 micrometers;wherein the medium has a thickness of about 0.2 to 50 mm, a solidity of less than 10%, a pore size of about 0.5 to 100 micrometers, and a permeability of about 5 to 500 ft-min−1. 18. The filtration medium of claim 1 wherein the bicomponent fiber has a fiber diameter of about 14 micrometers. 19. The filtration medium of claim 1 comprising about 50% by weight of the bicomponent fiber. 20. The filtration medium of claim 1 comprising a thermally bonded nonwoven structure comprises 20-80 wt. % bicomponent fibers, and the media fiber comprises about 0.5 to 15 wt. % secondary fibers and 80 to 20 wt. % glass fibers. 21. The filtration medium of claim 20 wherein the glass fibers comprise a blend of fibers from sources of different average diameters. 22. The filtration medium of claim 20 wherein the medium has solidity of less than 10% and the medium has basis weight of about 20 to 200 g/m2. 23. The filtration medium of claim 20 wherein the medium has permeability of about 5 to 500 ft/min. 24. The filtration medium of claim 20 wherein the medium has permeability of about 5 to 200 ft/min. 25. The filtration medium of claim 20 wherein the medium has permeability of about 40 to 500 ft/min. 26. The filtration medium of claim 20 wherein the medium has compressibility of about 10 to 20% when pressure is varied from 0.125 lb/in2 to 0.625 lb/in2. 27. The filtration medium of claim 20 wherein the glass fibers are selected from fibers having an average fiber diameter of about 0.1 to 1 micrometer, 0.3 to 2 micrometers, 0.3 to 0.5 micrometer, 0.5 to 5 micrometers, 0.75 to 7 micrometers, 1 to 2 micrometers, 1 to 10 micrometers, 3 to 6 micrometers, 3 to 30 micrometers, 6 to 10 micrometers, 10 to 100 micrometers, or a combination of two or more thereof. 28. The filtration medium of claim 20 wherein the medium comprises about 0.01 to 10 wt % of a fluoro-organic agent. 29. The filtration medium of claim 13 wherein the medium is substantially free of residue from an aqueous binder resin. 30. The filtration medium of claim 14 wherein the medium is substantially free of residue from an aqueous binder resin.
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