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    • 3. 发明申请
    • ABSORBENT FABRIC
    • 吸收布
    • US20160376730A1
    • 2016-12-29
    • US15038915
    • 2014-11-25
    • ASAHI KASEI KABUSHIKI KAISHA
    • Junko DEGUCHIHiroyuki KINOUCHIMisako YAMAMURO
    • D01F6/92D01F11/08
    • D01F6/92D01F6/84D01F11/08D06M11/38D06M2101/32D10B2401/022D10B2501/00D10B2503/06
    • Provided is a fabric that semi-permanently absorbs water even without being subjected to water absorption treatment, i.e., an absorbent fabric that has a pleasant feel, can quickly absorb perspiration when worn, has excellent comfort, and is soft and suitable for use in inner wear, sportswear, etc. The absorbent fabric according to the present invention includes polyester fibers in which ethylene terephthalate constitutes at least 95 mol % of repeating units, wherein a carboxylic acid terminated linear oligomer component is present on the surface of the polyester fibers, and the absorbency according to the JIS L1907 dripping method after washing 30 times according to the JIS L0217 103 C method is at most 5 seconds. The polyester fibers preferably contain 0.005-1 wt % of the S element.
    • 提供一种即使不进行吸水处理也即半吸收水的织物,即具有舒适感觉的吸收性织物,可以在穿着时快速吸收汗液,具有优异的舒适性,并且柔软并适合用于内部 磨损,运动服等。本发明的吸收性织物包括其中对苯二甲酸乙二醇酯构成至少95摩尔%的重复单元的聚酯纤维,其中在聚酯纤维的表面上存在羧酸封端的线性低聚物组分, 按照JIS L0217103C方法洗涤30次后的JIS L1907滴加法的吸光度为5秒以下。 聚酯纤维优选含有0.005-1重量%的S元素。
    • 6. 发明申请
    • METHOD OF DRY-SPINNING PARA-ARAMID FIBER
    • 干纺纤维纤维的方法
    • US20150354093A1
    • 2015-12-10
    • US14758165
    • 2013-12-19
    • KOLON INDUSTRIES, INC.
    • Tae Hak PARKBum Hoon LEEJae Young LEEYoung Cheol PARKKyeong Hwan RHO
    • D01D5/04D01D5/12D01D10/06
    • D01D5/04D01D5/12D01D10/06D01F6/805D01F11/08D10B2331/021
    • The present invention provides a method for manufacturing para-aramid fibers, which includes: spinning a polymeric solution containing aramid polymer in an organic solvent through a spinneret into an inert gas to partially remove the organic solvent contained in the spun fiber; contacting the spun fiber with conditioning solution, so as to maintain residual water in fiber in a range of 10 to 15%; and subjecting the treated fiber to drawing, washing and heating in a dry-spinning manner. The present invention may greatly reduce energy consumption and costs for recovery of the solvent, as compared to a conventional manufacturing method of aramid fiber in a wet-spinning manner. Further, the present invention may solve conventional problems such as corrosion of apparatus, deterioration of working environments, or the like, since a concentrated sulfuric acid solvent is not used in a spinning process. Still further, the present invention may conduct drawing and heating after maintaining the residual water in fiber in a range of 10 to 15% before drawing, thereby remarkably improving the strength and elastic modulus of the fiber.
    • 本发明提供对位芳族聚酰胺纤维的制造方法,其包括:将含有芳族聚酰胺聚合物的有机溶剂中的聚合物溶液通过喷丝头纺丝成惰性气体,以部分除去纺丝纤维中所含的有机溶剂; 使纺丝纤维与调理溶液接触,以保持纤维中的残留水在10〜15%的范围内。 对经处理的纤维进行拉伸,洗涤和干纺加热。 与传统的芳族聚酰胺纤维的湿法纺丝方法相比,本发明可以大大降低能量消耗和回收溶剂的成本。 此外,由于在纺丝工序中不使用浓硫酸溶剂,本发明可以解决设备腐蚀,工作环境劣化等常规问题。 此外,本发明可以在拉伸前将纤维中的残留水保持在10〜15%的范围内进行拉伸加热,从而显着提高纤维的强度和弹性模量。
    • 8. 发明授权
    • Resistive heating using polyaniline fiber
    • 使用聚苯胺纤维进行电阻加热
    • US07132630B2
    • 2006-11-07
    • US10727025
    • 2003-12-02
    • Baohua QiBenjamin R. Mattes
    • Baohua QiBenjamin R. Mattes
    • H05B3/54
    • H01B1/128D01F6/76D01F11/08H05B3/146H05B3/342H05B2203/013H05B2203/014H05B2203/017H05B2203/036Y10T428/31786
    • The use of conductive polyaniline fibers for resistive heating applications is described. Unlike metal wires and conductive-polymer coated fibers, under certain conditions, electric voltages or currents used to generate heat in the fibers were found to produce irreversible changes to the polymer backbone that destroy its electrical conductivity but not its structural integrity. The temperature that these changes occur varies with dopant and fiber diameter, and can be tailored to specific applications. Since these changes occur at lower temperatures than the temperature at which dopant molecules within the conductive polymer are lost or decomposed, both of which lower the conductivity of the material, polyaniline fibers can be used for resistive heating applications where the heating element is in the vicinity of the skin of the wearer thereof.
    • 描述了使用导电聚苯胺纤维进行电阻加热应用。 不同于金属丝和导电聚合物涂覆的纤维,在某些条件下,发现用于在纤维中产生热量的电压或电流对聚合物主链产生不可逆的变化,破坏其导电性而不是其结构完整性。 这些变化的温度随掺杂剂和纤维直径而变化,并且可以针对特定应用而定制。 由于这些变化发生在比导电聚合物中的掺杂剂分子丢失或分解的温度低的温度下,这两者都降低了材料的导电性,所以聚苯胺纤维可用于加热元件附近的电阻加热应用 的穿着者的皮肤。