US2007275222A1PendingUtilityA1
Porous insulating film and its laminates
Est. expiryApr 23, 2019(expired)· nominal 20-yr term from priority
H01M 50/457H01M 50/451H01M 50/494H01M 50/417H01M 50/491C08J 5/18B29C 41/12C08G 73/1071H01M 2300/0094B32B 2307/202H01M 50/446H01M 50/431B32B 2307/714C08G 73/1067H01M 50/44C08J 2379/08H01M 10/056B29L 2031/3061Y10S428/901H05K 1/0346B29K 2995/0006B32B 5/18C08G 73/105B29K 2995/0007B29K 2995/0017B32B 27/06B32B 2307/7242B32B 15/08B32B 2307/306Y10T428/249978Y10T428/31721Y10T428/249979Y10T428/24999B32B 2307/204Y02E60/10Y10T428/24917B32B 27/281B32B 27/16B32B 7/12Y10T428/249982B32B 3/26B32B 2307/206B32B 2457/08Y10T428/249958B32B 2305/026
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Claims
Abstract
A porous insulating film comprising a highly heat resistant resin film having a fine porous structure with a mean pore size of 0.01-5 μm in at least the center of the film, and a porosity of 15-80%. A laminate is prepared by forming a heat resistant adhesive layer or a conductive metal layer or an inorganic or metal substrate on one or both sides of the porous insulating film or by forming an inorganic or metal substrate on one side of the porous insulating film and a conductive metal layer on the other side.
Claims
exact text as granted — not AI-modified1 - 14 . (canceled)
15 . A porous insulating film consisting essentially of a highly heat resistant polyimide resin film having a fine porous structure wherein:
a) fine continuous channels reaching to both surfaces of the insulating film in a nonlinear fashion have a mean pore size of 0.01-2 μm in the center of the film and a porosity of 15-80%; b) the polyimide resin film is prepared from a polyimide precursor solution and consists essentially of a polyimide obtained from the combination of at least one tetracarboxylic acid component selected from a biphenyltetracarboxylic dianhydride and pyromellitic dianhydride and a diamine component selected from a phenylenediamine or a diaminodiphenylether; and c) the insulating film has
a thickness of 5-150 μm,
a resistance to passage of air of from 30 sec/100 cc to 2000 sec/100 cc and
a heat shrinkage of not greater than about ±1% after being heat-treated at 105° C. for 8 hours and
does not contain a dense layer on either of the surfaces.
16 . The porous insulating film according to claim 15 , wherein the mean pore size in the center of the film is 0.05-1 μm.
17 . The porous insulating film according to claim 15 , wherein the porosity is 30-80%.
18 . The porous insulating film according to claim 15 , wherein the thickness is 5-100 μm.
19 . The porous insulating film according to claim 15 , which is fabricated by a film casting method.
20 . The porous insulating film according to claim 15 , which has a dielectric constant of no greater than 2.5.
21 . A porous insulating film consisting essentially of a highly heat resistant polyimide resin film having a fine porous structure wherein:
a) fine continuous channels reaching to both surfaces of the insulating film in a nonlinear fashion have a mean pore size of 0.01-2 μm in the center of the film; and b) the polyimide resin film is prepared from a polyimide precursor solution and consists essentially of a polyimide obtained from the combination of at least one tetracarboxylic acid component selected from a biphenyltetracarboxylic dianhydride and pyromellitic dianhydride and a diamine component selected from a phenylenediamine or a diaminodiphenylether; and c) the insulating film has
a thickness of 5-100 μm,
a resistance to passage of air of from 30 sec/100 cc to 2000 sec/100 cc,
a heat resistance temperature of at least 200° C. and
a heat shrinkage of not greater than ±1% after being heat-treated at 105° C. for 8 hours and
does not contain a dense layer on either of the surfaces.
22 . A battery separator comprising a porous insulating film according to claim 21 .
23 . The porous insulating film according to claim 15 , wherein the pores in the porous structure are arranged in the film substantially parallel to the film surfaces.
24 . The porous insulating film according to claim 15 or 21 , wherein the biphenyltetracarboxylic dianhydride is 3,3′,4,4′-biphenyltetracarboxylic dianhydride.
25 . The porous insulating film according to claim 21 , wherein the pores in the porous structure are arranged in the film substantially parallel to the film surfaces.
26 . The porous insulating film according to claim 15 or 21 , wherein the fine continuous channels have a mean pore size of 0.4-0.9 μm at both surfaces of the film.Join the waitlist — get patent alerts
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