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    • 5. 发明申请
    • Abrasive Cloth and Method for Producing Nanofiber Structure
    • 磨料布和生产纳米纤维结构的方法
    • US20070218279A1
    • 2007-09-20
    • US11578926
    • 2005-04-20
    • Shuichi NonakaYoshihiro NaruseTakashi OchiTakeo Matsunase
    • Shuichi NonakaYoshihiro NaruseTakashi OchiTakeo Matsunase
    • B24B37/00D04H1/42
    • B24B37/24D04H1/42D04H1/4358D04H1/4382Y10T428/2915Y10T442/2008Y10T442/2861Y10T442/2893Y10T442/608Y10T442/614Y10T442/626Y10T442/659
    • An abrasive cloth which comprises an article in a sheet form having, in at least a part thereof, nanofibers comprising a thermoplastic polymer and having a number average single fiber fineness of 1×10−8 to 2×10−4 dtex wherein the sum of single fiber fineness percentages (which is defined in the specification) of a single fiber fineness of 1×10−8 to 2×10−4 dtex is the range of 60% or more, and exhibits a stress at 10% elongation in a longitudinal direction of 5 to 200 N/cm-width; and a method for preparing a nanofiber structure, which comprises providing a nanofiber dispersion having a dispersant and, dispersed therein, nanofibers comprising a thermoplastic polymer and having a number average diameter of 1 to 500 nm, attaching the dispersion to a support, and then removing said dispersant. The above abrasive cloth is excellent in texturing characteristics, and the above method allows the preparation of a nanofiber structure wherein nanofibers form a composite with the support.
    • 一种研磨布,其包括片状制品,其至少一部分具有包含热塑性聚合物的纳米纤维,并且具有1×10 -8至2×10 -6的平均单纤维细度, 4tex,其中单纤维细度为1×10 -8至2×10 -4分特的单纤维细度百分比(在说明书中定义)之和 为60%以上的范围,在长度方向的10%伸长率的应力为5〜200N / cm宽; 以及纳米纤维结构体的制造方法,其特征在于,提供具有分散剂的纳米纤维分散体,分散在其中的纳米纤维,所述纳米纤维包含热塑性聚合物,数均粒径为1〜500nm,将所述分散体附着到载体上, 所述分散剂。 上述研磨布的纹理特性优异,上述方法可以制备其中纳米纤维与载体形成复合材料的纳米纤维结构。
    • 8. 发明授权
    • High tenacity and high toughness acrylic sulfide fibers, a process for
production thereof, and composite materials prepared by using it
    • 高韧性和高韧性的丙烯酸硫化物纤维,其制备方法和使用它制备的复合材料
    • US5502090A
    • 1996-03-26
    • US412563
    • 1989-09-25
    • Takeo MatsunaseTakashi Takada
    • Takeo MatsunaseTakashi Takada
    • C04B16/06D01F6/18D06M11/57C08J7/12C08J5/14
    • C04B16/06D01F6/18D06M11/57Y10T428/31699
    • The present invention relates to acrylic sulfide fibers whose tensile strength is at least 3.5 g/d, toughness expressed by TE.sup.1/2 product of tensile strength (T g/d) and a square root of tensile elongation (E %), is higher than 10 and sulfur content is higher than 0.5 weight %, a process for producing acrylic sulfide fibers characterized by heating acrylic fibers whose tensile strength is at least higher than 7 g/d in sulfur-containing atmosphere, and composite materials being reinforced with above described acrylic sulfide fibers.Acrylic sulfide fibers obtained have high tenacity and high toughness as well as excellent heat resistance, anti-flammability and alkali resistance.Therefore, above described acrylic sulfide fibers are useful for such applications as heat resistant and flame resistant spun-woven products, reinforcing cement cured in an autoclave and abrasive materials as asbestos substituting fibers.
    • 本发明涉及拉伸强度至少为3.5g / d,TE1 / 2产品拉伸强度(T g / d)和拉伸伸长率平方根(E%)的韧性的丙烯酸类硫化物纤维,高于 10,硫含量高于0.5重量%,制备丙烯酸硫化纤维的方法,其特征在于在含硫气氛中加热抗拉强度至少高于7g / d的丙烯酸纤维,以及用上述丙烯酸 硫化纤维。 得到的丙烯酸硫化纤维具有高韧性和高韧性以及优异的耐热性,抗燃性和耐碱性。 因此,上述丙烯酸硫化物纤维可用于耐热和阻燃纺织产品,在高压釜中固化的增强水泥和作为石棉替代纤维的研磨材料。