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    • 1. 发明申请
    • METHOD FOR PRODUCING POLYTETRAFLUOROETHYLENE FIBER AND POLYTETRAFLUOROETHYLENE FIBER
    • 聚氟乙烯纤维和聚四氟乙烯纤维的生产方法
    • US20100203332A1
    • 2010-08-12
    • US12665231
    • 2008-06-16
    • Daisuke KitagawaTakashi WanoHideki YamaneYoshihito Takagi
    • Daisuke KitagawaTakashi WanoHideki YamaneYoshihito Takagi
    • B29C51/08C08F214/26D02G3/00
    • D01F6/12D01D5/08D01D5/12Y10T428/298
    • The present invention provides a method for producing a PTFE fiber that makes it possible, unlike the emulsion spinning process, to obtain a polytetrafluoroethylene (PTFE) fiber, particularly a long PTFE fiber, without using a matrix material, is more productive than conventional production methods such as a slit yarn process, and is capable of enhancing mechanical properties and the degree of freedom in diameter of the obtained fiber. The method for producing the PTFE fiber of the present invention includes the step of reducing a diameter of a string-shape PTFE-containing solid material (a first solid material) by drawing the first solid material at a temperature equal to or higher than a melting point of PTFE. The first solid material can be obtained from a PTFE-containing solid material (a second solid material) containing water and a surfactant, by reducing an amount of the water contained in the second solid material.
    • 本发明提供了一种PTFE纤维的制造方法,与乳液纺丝法不同,不需要使用基质材料即可获得聚四氟乙烯(PTFE)纤维,特别是长的PTFE纤维,与以往的制造方法相比, 例如狭缝纱工艺,并且能够提高所获得的纤维的机械性能和直径的自由度。 本发明的PTFE纤维的制造方法包括通过在等于或高于熔融的温度下拉伸第一固体材料来降低线状含PTFE固体材料(第一固体材料)的直径的步骤 PTFE点。 通过减少第二固体材料中所含的水量,可以从含有水和表面活性剂的含PTFE固体材料(第二固体材料)获得第一固体材料。
    • 2. 发明授权
    • Method for producing polytetrafluoroethylene fiber and polytetrafluoroethylene fiber
    • 生产聚四氟乙烯纤维和聚四氟乙烯纤维的方法
    • US08945453B2
    • 2015-02-03
    • US12665231
    • 2008-06-16
    • Daisuke KitagawaTakashi WanoHideki YamaneYoshihito Takagi
    • Daisuke KitagawaTakashi WanoHideki YamaneYoshihito Takagi
    • D01F6/12D01D5/12
    • D01F6/12D01D5/08D01D5/12Y10T428/298
    • The present invention provides a method for producing a PTFE fiber that makes it possible, unlike the emulsion spinning process, to obtain a polytetrafluoroethylene (PTFE) fiber, particularly a long PTFE fiber, without using a matrix material, is more productive than conventional production methods such as a slit yarn process, and is capable of enhancing mechanical properties and the degree of freedom in diameter of the obtained fiber. The method for producing the PTFE fiber of the present invention includes the step of reducing a diameter of a string-shape PTFE-containing solid material (a first solid material) by drawing the first solid material at a temperature equal to or higher than a melting point of PTFE. The first solid material can be obtained from a PTFE-containing solid material (a second solid material) containing water and a surfactant, by reducing an amount of the water contained in the second solid material.
    • 本发明提供了一种PTFE纤维的制造方法,与乳液纺丝法不同,不需要使用基质材料即可获得聚四氟乙烯(PTFE)纤维,特别是长的PTFE纤维,与以往的制造方法相比, 例如狭缝纱工艺,并且能够提高所获得的纤维的机械性能和直径的自由度。 本发明的PTFE纤维的制造方法包括通过在等于或高于熔融的温度下拉伸第一固体材料来降低线状含PTFE固体材料(第一固体材料)的直径的步骤 PTFE点。 通过减少第二固体材料中所含的水量,可以从含有水和表面活性剂的含PTFE固体材料(第二固体材料)获得第一固体材料。
    • 6. 发明申请
    • HEAT CONDUCTIVE ADHESIVE COMPOSITION AND HEAT CONDUCTIVE ADHESIVE SHEET
    • 导热粘合剂和导热胶粘剂
    • US20110290468A1
    • 2011-12-01
    • US13147124
    • 2010-01-13
    • Junichi NakayamaYoshio TeradaKenji FurutaTakashi Wano
    • Junichi NakayamaYoshio TeradaKenji FurutaTakashi Wano
    • F28F7/00C09K5/00
    • C09J133/08C08K7/00C08K2003/382C09J9/00H01L23/3737H01L2924/0002H01L2924/00
    • An object is to provide a heat conductive adhesive composition containing boron nitride particles and an acrylic polymer, which is capable of forming a molding having a good heat conductivity, and a heat conductive adhesive sheet with the heat conductive adhesive composition therein, which has a good heat conductivity and bond strength. Provided is the heat conductive adhesive composition which contains boron nitride particles and an acrylic polymer component, and the above boron nitride particles contain boron nitride particles having a particle size of 3 μm or more and 300 μm or less, wherein the boron nitride particles contain 5 to 45% by volume of boron nitride particles having a particle size of 3 μm or more and 20 μm or less, 30 to 70% by volume of boron nitride particles having a particle size of more than 20 μm and 60 μm or less, 1.0 to 40% by volume of boron nitride particles having a particle size of more than 60 μm and 300 μm or less.
    • 本发明的目的是提供一种能够形成具有良好导热性的成型体的氮化硼粒子和丙烯酸类聚合物的导热性粘合剂组合物,其中具有良好导热性的粘合剂组合物的导热性粘合剂片材 导热性和结合强度。 提供含有氮化硼颗粒和丙烯酸类聚合物组分的导热粘合剂组合物,并且上述氮化硼颗粒含有粒径为3μm以上至300μm以下的氮化硼颗粒,其中氮化硼颗粒含有5 至45体积%的粒径为3μm以上且20μm以下的氮化硼粒子,30〜70体积%的粒径为20μm以上且60μm以下的氮化硼粒子,1.0 至40体积%的粒径为60μm以上且300μm以下的氮化硼粒子。