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    • 2. 发明申请
    • Microcellular foam and foamed composite material
    • 微孔泡沫和泡沫复合材料
    • US20020071947A1
    • 2002-06-13
    • US10068248
    • 2002-02-06
    • Nano-Tex, LLC
    • David S. SoaneMichael R. Houston
    • B32B003/00B32B003/26
    • D01D5/247C08J9/04C08J2201/03D01F1/08Y10T428/249921Y10T428/249962Y10T428/249971Y10T428/249972Y10T428/2913Y10T428/2927Y10T428/2935Y10T428/2975
    • The present invention is directed to thermo-expandable fibers and to the expanded hollow fibers or microtubes, microcellular foam or foamed composite material that results upon heating the expandable fibers. The thermo-expandable fiber of the present invention is characterized by having a polymeric wall surrounding one or more pockets or particles of blowing agent or propellant within the fiber. The polymeric wall may have reactive functional groups on its surface to give a fusible fiber. When the expandable fibers are heated, they expand to form hollow fibers or microtubes comprising polymeric shells surrounding one or more internal gaseous voids, and when the fibers are expanded while in contact with each other, a microcellular foam may be formed. The foam consists of a plurality of hollow fibers fused together, optionally aided by functional groups present on the surface of the heated fibers that act to crosslink the material. When expandable microspheres are mixed with a matrix, which can optionally react with functional groups on the fiber surface, and the resulting combination is heated, the fibers expand to give a foamed composite material in which the hollow fibers or microtubes may optionally be fused or chemically crosslinked to the matrix.
    • 本发明涉及热膨胀纤维和膨胀的中空纤维或微管,微孔泡沫或泡沫复合材料,其导致加热可膨胀纤维。 本发明的热膨胀性纤维的特征在于,在纤维内具有包围发泡剂或推进剂的一个或多个口袋或颗粒的聚合物壁。 聚合物壁在其表面上可以具有反应性官能团以得到可熔纤维。 当可膨胀纤维被加热时,它们膨胀以形成包含围绕一个或多个内部气体空隙的聚合物壳的中空纤维或微管,并且当纤维在彼此接触时膨胀时,可以形成微孔泡沫。 泡沫由多个融合在一起的中空纤维组成,任选由加热纤维表面上存在的用于交联材料的官能团辅助。 当可膨胀微球与可以任选地与纤维表面上的官能团反应的基质混合,并且所得到的组合被加热时,纤维膨胀以产生泡沫复合材料,其中中空纤维或微管可任选地被熔化或化学 与基质交联。
    • 6. 发明申请
    • Durable finishes for textiles
    • 耐用的纺织品表面处理
    • US20020160675A1
    • 2002-10-31
    • US10093175
    • 2002-03-06
    • Nano-Tex, LLC
    • Matthew R. LinfordDavid S. SoaneDavid A. OffordWilliam Ware JR.
    • B32B027/04B05D003/02B32B027/12B32B005/02
    • D06M15/693D06M7/00D06M15/227D06M15/233D06M15/256D06M15/277D06M15/295D06M15/353D06M15/3566D06M15/643D06M2200/11D06M2200/12D06M2200/35D06M2200/40D06M2200/50Y10T442/2164Y10T442/2189Y10T442/2279Y10T442/2287Y10T442/2352
    • The present invention relates to textile treatment compositions for imparting desirable characteristics durably to textile fibers and fabrics, including softness, hydrophobicity, oleophobicity, surface lubricity, abrasion resistance, tear resistance, improved drape, and pilling resistance. More particularly, in one embodiment, the invention is directed to preparations that comprise a carboxylate-functionalized fluorinated polymer and a catalyst that is capable of forming reactive anhydride rings between carboxyl groups on the polymer. In another embodiment, the invention is directed to preparations comprising a polymeric softener having at least one anhydride functional group or at least one reactive group capable of forming an anhydride functional group, together with a catalyst for forming anhydrides from the reactive group or groups. In either embodiment, the resulting reactive anhydride rings bind to substrates, such as textiles and other webs, having free sulfhydryl, alcohol, or amine groups. The invention is further directed to the process for treating textiles and other webs with desirable finishes durable to repeated cleanings. This invention is further directed to the yarns, fibers, fabrics, textiles, finished goods, or nonwovens (encompassed herein under the terms nulltextilesnull and nullwebsnull) treated with the textile-reactive preparations of the invention. Such textiles and webs exhibit a greatly improved, durable characteristics, such as softness and/or hydrophobicity, even after multiple launderings.
    • 本发明涉及用于赋予纺织纤维和织物持久的期望特性的织物处理组合物,包括柔软度,疏水性,疏油性,表面润滑性,耐磨性,抗撕裂性,改进的悬垂性和起球抗性。 更具体地,在一个实施方案中,本发明涉及包含羧酸酯官能化的氟化聚合物和能够在聚合物上的羧基之间形成反应性酸酐环的催化剂的制剂。 在另一个实施方案中,本发明涉及包含具有至少一个酸酐官能团或至少一个能够形成酸酐官能团的反应性基团的聚合物柔软剂以及用于从反应性基团形成酐的催化剂的制剂。 在任一实施方案中,所得反应性酸酐环结合到具有游离巯基,醇或胺基团的底物,例如纺织品和其它纤维网。 本发明进一步涉及用于处理纺织品和其它织物的方法,所述织物和其它织物具有耐反复清洁的期望的整理剂。 本发明进一步涉及用本发明的织物反应性制剂处理的纱线,纤维,织物,织物,成品或无纺布(在本文中涵盖的术语“纺织品”和“纤维网”)。 即使在多次洗涤之后,这样的纺织品和纤维网也显示出非常改进的耐久特性,例如柔软度和/或疏水性。
    • 8. 发明申请
    • Photochromic glass nanoparticles
    • 光致变色玻璃纳米粒子
    • US20030099834A1
    • 2003-05-29
    • US10314624
    • 2002-12-09
    • Nano-Tex, LLC
    • Lael L. ErskineDan B. MillwardDavid S. Soane
    • C03C008/18
    • B82Y30/00C03B19/1065C03C4/06C03C12/00G01N31/22Y10S977/773Y10S977/843Y10S977/844Y10S977/896Y10S977/926Y10T428/2996
    • The present invention is directed to microemulsion techniques for rapidly preparing photochromic glass nanoparticles and to the photochromic glass nanoparticles so prepared. More particularly, the method of the invention comprises the combination of two microemulsions, one containing a water-soluble silver salt and a glass precursor and the other containing a halide salt and an initiator for glass formation, which process rapidly yields silver halide particles. This invention gives nanometer-sized silver halide particles embedded in glass, thus providing photochromic glass nanoparticles without further annealing, or at most mild annealing. These nanoparticles are valuable as added components to any macro-material that one might wish to have photochromic properties. The particles would impart photochromism while not affecting the physical properties of the material.
    • 本发明涉及用于快速制备光致变色玻璃纳米颗粒和如此制备的光致变色玻璃纳米颗粒的微乳液技术。 更具体地,本发明的方法包括两种微乳液的组合,一种含有水溶性银盐和玻璃前体,另一种含有卤化物盐和用于玻璃形成的引发剂,该方法快速产生卤化银颗粒。 本发明提供了纳米尺寸的卤化银颗粒嵌入玻璃中,从而提供光致变色玻璃纳米粒子,无需进一步退火,或至多进行温和退火。 这些纳米颗粒作为添加的组分是任何可能希望具有光致变色性质的宏观材料的有价值的。 颗粒将赋予光致变色,同时不影响材料的物理性能。