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    • 3. 发明申请
    • METAL-COATED POLYOLEFIN FIBRES FOR WOVENS AND NONWOVENS
    • 用于WOVENS和NONWOVENS的金属涂层的聚烯烃纤维
    • WO2010006664A1
    • 2010-01-21
    • PCT/EP2009/002050
    • 2009-03-19
    • BOREALIS AGBROEDERS, BertVAN PARIDON, HenkACKERMANS, Nina
    • BROEDERS, BertVAN PARIDON, HenkACKERMANS, Nina
    • D06M11/83A01N25/34A01N59/16C23C14/20C23C14/56
    • D06M11/83A01N25/34C23C14/20D06M2101/18A01N25/10A01N59/16
    • The present invention is directed to a thermal vaporization process for coating of polyolefin fibres with a metal, wherein said process comprises the following steps: inserting a polyolefin fibre or a sample of polyolefin fibres into a metallisation chamber comprising a heating means located next to a piece of metal, applying a high vacuum in said chamber applying heat by said heating means to said piece of metal whereby the metal evaporates and is deposited onto the colder surface of said polyolefin fibre or sample of polyolefin fibres removing the coated fibre or sample of fibres from said metallisation chamber. Similarly, the present invention is also directed to said process applied on wovens or nonwovens. The present invention is further directed to polyolefin fibres coated with a metal according to the inventive process, to wovens and nonwovens coated by the inventive process and to polyolefin fibres, wovens and nonwovens having a surface coating of metal, wherein said surface coating has a thickness of between 0.1 to 100 nm.
    • 本发明涉及一种用金属涂覆聚烯烃纤维的热蒸发方法,其中所述方法包括以下步骤:将聚烯烃纤维或聚烯烃纤维样品插入金属化室中,所述金属化室包括位于一块的旁边的加热装置 的金属,在所述室中施加高真空,通过所述加热装置将热量施加到所述金属片上,由此金属蒸发并沉积在所述聚烯烃纤维或聚烯烃纤维样品的较冷的表面上,从而将涂覆的纤维或纤维样品从 所述金属化室。 类似地,本发明还涉及用于织物或无纺布的所述方法。 本发明还涉及根据本发明方法涂覆有金属的聚烯烃纤维,用本发明方法涂覆的织物和无纺布以及具有金属表面涂层的聚烯烃纤维,织物和无纺布,其中所述表面涂层具有厚度 为0.1〜100nm。
    • 5. 发明申请
    • MELT BLOWN FIBER
    • 熔吹纤维
    • WO2011092092A3
    • 2011-08-04
    • PCT/EP2011/050676
    • 2011-01-19
    • BOREALIS AGVAN PARIDON, HenkBROEDERS, BertSARS, Wilhelmus henricus AdolfFIEBIG, JoachimACKERMANS, Nina
    • VAN PARIDON, HenkBROEDERS, BertSARS, Wilhelmus henricus AdolfFIEBIG, JoachimACKERMANS, Nina
    • D01F6/30C08F210/06D01D5/098D04H1/56
    • Melt-blown fiber having an average diameter of not more than 5.0 μm, said fiber comprises at least 85 wt.-% of a propylene copolymer, wherein • said melt blown fiber and/or said propylene copolymer has/have a melt flow rate MFR 2 (230 °C) measured according to ISO 1133 of at least 200 g/10min, • said propylene copolymer has a comonomer content of 0.5 to 5.5 wt.-%, the comonmers are ethylene and/or at least one C 4 to C 20 α-olefin selected from the group consisting of 1 -butene, 1-pentene, 1-hexene, 1-heptene, and 1-octene, • the propylene copolymer has regiodefects of not more than 0.4 mol.-% determined by 13 C-spectroscopy, and • said melt blown fiber and/or said propylene copolymer fulfill(s) the equation (1). wherein Tm [°C] is the melting temperature [given in °C] of melt blown fiber said and/or of said propylene copolymer measured according to ISO 11357-3, C2 [wt%] is the amount [given in weight percentage] of comonomers within said melt blown fiber and/or within said propylene copolymer determined with Fourier transform infrared spectroscopy (FTIR).
    • 平均直径不大于5.0μm的熔喷纤维,所述纤维包含至少85重量%的丙烯共聚物,其中·所述熔喷纤维和/或所述丙烯共聚物 具有根据ISO 1133测量的至少200g / 10min的熔体流动速率MFR 2(230℃),·所述丙烯共聚物具有0.5-5.5wt%的共聚单体含量, %时,共聚单体是选自1-丁烯,1-戊烯,1-己烯,1-戊烯,1-己烯,1-戊烯,1-戊烯,1-己烯, 1-己烯,1-庚烯和1-辛烯,·丙烯共聚物具有< 2,1> 通过13 C-光谱测定的不超过0.4摩尔%的区域特征,和·所述熔喷纤维和/或所述丙烯共聚物满足方程(1)。 其中Tm [℃]是根据ISO 11357-3测量的熔喷纤维和/或所述丙烯共聚物的熔融温度[以℃表示],C2 [wt%]是以重量 (FTIR)测定的所述熔喷纤维内和/或所述丙烯共聚物内的共聚单体的百分比。