[미국특허]
Crystalline polymer microporous membrane and filtration filter
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
B01D-039/00
B01D-063/00
B01D-069/12
B01D-067/00
B01D-071/36
B32B-027/08
출원번호
US-0053936
(2011-03-22)
등록번호
US-8925737
(2015-01-06)
우선권정보
JP-2010-083916 (2010-03-31)
발명자
/ 주소
Ishizuka, Kenichi
Nishita, Nobuhiro
출원인 / 주소
FUJIFILM Corporation
대리인 / 주소
Studebaker & Brackett PC
인용정보
피인용 횟수 :
0인용 특허 :
13
초록▼
A crystalline polymer microporous membrane, which contains: a laminate of two or more layers including a layer containing a first crystalline polymer and a layer containing a second crystalline polymer, the laminate having a plurality of pores each piercing through the laminate in a thickness direct
A crystalline polymer microporous membrane, which contains: a laminate of two or more layers including a layer containing a first crystalline polymer and a layer containing a second crystalline polymer, the laminate having a plurality of pores each piercing through the laminate in a thickness direction thereof, wherein the first crystalline polymer has higher crystallinity than crystallinity of the second crystalline polymer, and the layer containing the first crystalline polymer has the maximum thickness thicker than the maximum thickness of the layer containing the second crystalline polymer, and wherein at least one layer in the laminate has a plurality of pores whose average diameter continuously or discontinuously changes along with a thickness direction of the laminate at least at part thereof.
대표청구항▼
1. A crystalline polymer microporous membrane, comprising: a laminate of two or more layers including a layer containing a first crystalline polymer and a layer containing a second crystalline polymer, the laminate having a plurality of pores each piercing through the laminate in a thickness directi
1. A crystalline polymer microporous membrane, comprising: a laminate of two or more layers including a layer containing a first crystalline polymer and a layer containing a second crystalline polymer, the laminate having a plurality of pores each piercing through the laminate in a thickness direction thereof,wherein the first crystalline polymer has higher crystallinity than crystallinity of the second crystalline polymer, and the layer containing the first crystalline polymer has the maximum thickness that is 1.5 times or more thicker than the maximum thickness of the layer containing the second crystalline polymer, andwherein at least one layer in the laminate has a plurality of pores whose average diameter continuously or discontinuously changes along with a thickness direction of the laminate at least at part thereof. 2. The crystalline polymer microporous membrane according to claim 1, wherein the laminate contains two or more layers of the layer containing the first crystalline polymer, and one layer of the layer containing the second crystalline polymer. 3. The crystalline polymer microporous membrane according to claim 2, wherein the laminate contains two layers of the layer containing the first crystalline polymer, and one layer of the layer containing the second crystalline polymer provided between the two layers of the layer containing the first crystalline polymer. 4. The crystalline polymer microporous membrane according to claim 3, wherein the two layers of the layer containing the first crystalline polymer each has a thickness larger than that of the layer containing the second crystalline polymer. 5. The crystalline polymer microporous membrane according to claim 1, wherein the crystalline polymer microporous membrane has a thickness of 1 μm to 300 μm. 6. The crystalline polymer microporous membrane according to claim 1, wherein the crystallinity of the first crystalline polymer is 1.02 or more times the crystallinity of the second crystalline polymer. 7. The crystalline polymer microporous membrane according to claim 1, wherein the first crystalline polymer is polytetrafluoroethylene. 8. The crystalline polymer microporous membrane according to claim 1, wherein the second crystalline polymer is polytetrafluoroethylene, or a polytetrafluoroethylene copolymer. 9. The crystalline polymer microporous membrane according to claim 8, wherein the polytetrafluoroethylene copolymer is a copolymer containing at least two polymer components selected from the group consisting of tetrafluoroethylene, perfluoroalkylvinyl ether, hexafluoropropylene, and chlorotrifluoroethylene. 10. The crystalline polymer microporous membrane according to claim 1, wherein the pores on one surface of the crystalline polymer microporous membrane have an average pore diameter of 0.05 μm to 1.0 μm, and the pores on the other surface of the crystalline polymer microporous membrane have an average pore diameter of 0.5 μm to 100 μm. 11. A filtration filter, comprising: a crystalline polymer microporous membrane,wherein the crystalline polymer microporous membrane contains:a laminate of two or more layers including a layer containing a first crystalline polymer and a layer containing a second crystalline polymer, the laminate having a plurality of pores each piercing through the laminate in a thickness direction thereof,wherein the first crystalline polymer has higher crystallinity than crystallinity of the second crystalline polymer, and the layer containing the first crystalline polymer has the maximum thickness that is 1.5 times or more thicker than the maximum thickness of the layer containing the second crystalline polymer, andwherein at least one layer in the laminate has a plurality of pores whose average diameter continuously or discontinuously changes along with a thickness direction of the laminate at least at part thereof. 12. The filtration filter according to claim 11, wherein a surface of the crystalline polymer microporous membrane having an average pore diameter larger than the other surface thereof is arranged as a filtering surface of the filtration filter.
Branca Phillip A. ; Hubis Daniel E. ; Buerger Wolfgang,DEX ; Rudolf Christiane,DEX ; Tillmanns Ralf,DEX, Strong, air permeable membranes of polytetrafluoroethylene.
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