Stretch composite fabric and stretch porous polytetrafluoroethylene film 机翻标题: 暂无翻译,请尝试点击翻译按钮。

公开号/公开日
EP2027996 B1 2015-08-26 [EP2027996]EP2027996 A4 2010-12-01 [EP2027996]EP2027996 A1 2009-02-25 [EP2027996] / 2015-08-262010-12-012009-02-25
申请号/申请日
2007EP-0745280 / 2007-06-14
发明人
IMAI TAKASHI;
申请人
GORE WL & ASSOCIATES;
主分类号
IPC分类号
A41D-031/00A41D-031/02B29C-055/02B29K-027/12B29K-105/04B29L-007/00B32B-005/24B32B-027/30B32B-037/00C08J-009/00
摘要
(EP2027996) A stretch composite fabric comprises a sintered expanded porous polytetrafluoroethylene film and a stretch cloth laminated to each other while maintaining a flat state.  The stretch composite fabric has a tensile stress at 10% elongation, as measured in at least one direction, of 1.8 N/15 mm or less.  When a 5 cm-width test piece of the stretch composite fabric is stretched in a length direction under a load of 300 g and then released from the stress, an elongation recovery R of the stretch composite fabric, which is given by the following equation, is preferably 70% or more.  R = (L2-L3) / (L2-L1) x 100 (In the equation, L1, L2, and L3 represent the lengths of the composite fabric before the load is applied, when the load is applied, and after the load is removed, respectively.)
机翻摘要
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地址
代理人
代理机构
;
优先权号
2006JP-0165651 2006-06-15 2007WO-JP62023 2007-06-14
主权利要求
(EP2027996)  1. A stretch composite fabric, characterized by comprising a sintered expanded porous polytetrafluoroethylene film and a stretch cloth laminated to each other while maintaining a flat state, wherein  the stretch composite fabric has a tensile stress at 10% elongation, as measured in at least one direction, of 1.8 N/15 mm or less. 2. The stretch composite fabric according to claim 1, wherein a ratio (L T/L W) of a true length L T of the expanded porous polytetrafluoroethylene film to an apparent length L W of the film is 1.2 or less. 3. The stretch composite fabric according to claim 1, wherein when a test piece cut out to a width of 5 cm is stretched in a length direction under a load of 300 g and then released from the stress, an elongation recovery R of the stretch composite fabric, which is given by the following equation, is 70% or more: (Equation image 6 not included in text)  (wherein R represents a recovery, L1 represents the length of the composite fabric before the load is applied, L2 represents the length of the composite fabric when the load is applied, and L3 represents the length of the composite fabric after the load is removed). 4. The stretch composite fabric according to claim 1,  wherein when a test piece cut out to a width of 5 cm from the stretch cloth is stretched in a length direction under a load of 300 g, an elongation E of the stretch cloth, which is given by the following equation, is 30% or more: (Equation image 7 not included in text)  (wherein E represents an elongation, T1 represents the length of the stretch cloth before the load is applied, and T2 represents the length of the stretch cloth when the load is applied). 5. The stretch composite fabric according to claim 1,  wherein an inner surface of pores of the expanded porous polytetrafluoroethylene is coated with a water-repellent polymer and/or an oil-repellent polymer. 6. The stretch composite fabric according to claim 1, wherein an elastomer resin layer is formed on the expanded porous polytetrafluoroethylene film. 7. The stretch composite fabric according to claim 1,  wherein an outer exposed surface of the stretch cloth is subjected to a water-repellent treatment. 8. A fiber product, characterized by comprising the stretch composite fabric according to claim 1. 9. An expanded porous polytetrafluoroethylene film,  characterized in that the expanded porous polytetrafluoroethylene film has been sintered and has a mass per unit area of 5 to 100 g/m **2 and a tensile stress at 10% elongation of 0.5 N/15 mm or less. 10. The expanded porous polytetrafluoroethylene film according to claim 9, wherein the expanded porous polytetrafluoroethylene film is a biaxial expanded porous polytetrafluoroethylene film. 11. The expanded porous polytetrafluoroethylene film according to claim 9, wherein the expanded porous polytetrafluoroethylene film has a breaking elongation of 50 to 700%. 12. The expanded porous polytetrafluoroethylene film according to claim 9, wherein the expanded porous polytetrafluoroethylene film has an average thickness of 7 to 300 micron m. 13. The expanded porous polytetrafluoroethylene film according to claim 9, wherein the expanded porous polytetrafluoroethylene film has a maximum pore size of 0.01 to 10 micron m. 14. The expanded porous polytetrafluoroethylene film according to claim 9, wherein the expanded porous polytetrafluoroethylene film has a porosity of 50 to 98%. 15. A method for producing a stretch composite fabric, comprising the steps of: laminating a sintered expanded porous polytetrafluoroethylene film to a stretch cloth;  stretching the resulting laminate in a planar direction so as to increase the area of the laminate to 1.4 times or more;  and shrinking the laminate by removing the stretching force. 16. A method for producing a stretch composite fabric, comprising the steps of: laminating a sintered expanded porous polytetrafluoroethylene film to a stretch cloth;  stretching the resulting laminate in a uniaxial direction while preventing the occurrence of necking;  and shrinking the laminate by removing the stretching force. 17. A method for producing a stretch composite fabric, comprising the steps of: laminating a sintered expanded porous polytetrafluoroethylene film to a stretch cloth;  stretching the resulting laminate in biaxial directions;  and shrinking the laminate by removing the stretching force. 18. The method for producing a stretch composite fabric according to claim 15, wherein the stretching and shrinking of the laminate are performed at 220 deg.C or lower. 19. The method for producing a stretch composite fabric according to claim 15, wherein the shrinking of the laminate is performed at a temperature of 50 deg.C or higher.
法律状态
(EP2027996) LEGAL DETAILS FOR EP2027996  Actual or expected expiration date=2027-06-14    Legal state=ALIVE    Status=GRANTED     Event publication date=2007-06-14  Event code=EP/APP  Event indicator=Pos  Event type=Examination events  Application details  Application country=EP EP07745280  Application date=2007-06-14  Standardized application number=2007EP-0745280     Event publication date=2009-02-25  Event code=EP/A1  Event type=Examination events  Application published with search report  Publication country=EP  Publication number=EP2027996  Publication stage Code=A1  Publication date=2009-02-25  Standardized publication number=EP2027996     Event publication date=2009-02-25  Event code=EP/17P  Event indicator=Pos  Event type=Examination events  Request for examination filed Pruefungsantrag gestellt  Effective date of the event=2008-11-27     Event publication date=2009-02-25  Event code=EP/AK  Event indicator=Pos  Event type=Designated states  Designated contracting states: Benannte vertragsstaaten AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HU IE IS IT LI LT LU LV MC MT NL PL PT RO SE SI SK TR    Event publication date=2009-02-25  Event code=EP/AX  Event indicator=Pos  Event type=Designated states  Extension of the European patent to Request for extension of the european patent to AL BA HR MK RS    Event publication date=2010-12-01  Event code=EP/A4  Event indicator=Pos  Event type=Examination events  Supplementary search report Ergaenzender recherchenbericht  Publication country=EP  Publication number=EP2027996  Publication stage Code=A4  Publication date=2010-12-01  Standardized publication number=EP2027996     Event publication date=2010-12-01  Event code=EP/A4  Event indicator=Pos  Event type=Administrative notifications  Supplementary search report Despatch of supplementary search report  Effective date of the event=2010-10-29     Event publication date=2011-08-31  Event code=EP/17Q  Event indicator=Pos  Event type=Examination events  First examination report Erster pruefungsbescheid  Effective date of the event=2011-07-28     Event publication date=2012-08-08  Event code=EP/DAX  Event indicator=Neg  Event type=Designated states  Request for extension of the european patent (to any country) deleted    Event publication date=2015-06-17  Event code=EP/INTG  Event indicator=Pos  Event type=Examination events  Announcement of intention to grant  Effective date of the event=2015-05-19     Event publication date=2015-08-12  Event code=EP/RAP1  Event type=Change of name or address  Event type=Reassignment  Transfer of rights of an EP application Anmelder uebertragung (korr.) OWNER: W.L. GORE & ASSOCIATES, CO., LTD.    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B1A4A1
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