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    • 2. 发明授权
    • Flame-retardant polyester polymer dyeable with cationic dye, method of producing the same, and copolyester fiber using the same
    • 用阳离子染料染色的阻燃聚酯聚合物,其制备方法和使用其的共聚酯纤维
    • US07399799B2
    • 2008-07-15
    • US10952764
    • 2004-09-30
    • Seung-Cheol YangEung-Soo KimYang-Kuk SonIk-Hyeon Kwon
    • Seung-Cheol YangEung-Soo KimYang-Kuk SonIk-Hyeon Kwon
    • C08K3/40
    • C08G63/6886C08G63/6926C08G63/83D01F1/07D01F6/84
    • Disclosed is a flame-retardant polyester polymer dyeable with a cationic dye, a method of producing the same, a copolyester fiber using the same, and fiber products using the copolyester fiber. In the method, after a dimethyl isophthalate component containing metal sulfonate of Formula 2 separately reacts with ethylene glycol so that an extent of the ester interchange reaction is 95% or more to synthesize bis(hydroxyethyl terephthalate) containing metal sulfonate of Formula 3, bis(hydroxyethyl terephthalate) is fed so that a content of bis(hydroxyethyl terephthalate) is 0.01-5 mol % based on a diacid component in a polymer in a course of producing polyester, a phosphorus-based flame retardant of Formula 1 is fed so that a content of a phosphorus atom is 500-40000 ppm based on the polymer, and the mixture is copolymerized. The polyester polymer is dyeable with cationic dye while having excellent flame retardancy, and can be melt-spun like other polymers capable of being melt-spun. The copolyester fiber using the polyester polymer is capable of being processed according to processes through which conventional polyester fibers are processed, and is dyeable with cationic dye while having excellent flame retardancy.
    • 公开了一种可用阳离子染料染色的阻燃聚酯聚合物,其制备方法,使用其的共聚酯纤维和使用该共聚酯纤维的纤维产品。 在该方法中,在含有式2的金属磺酸酯的二甲基间苯二甲酸酯成分分别与乙二醇反应,使得酯交换反应的程度为95%以上以合成含有式3的金属磺酸盐的双(对羟基苯甲酸羟乙酯),双 (对苯二甲酸羟乙酯)),使得在制造聚酯的过程中,基于聚合物中的二元酸成分,双(对苯二甲酸羟乙酯)的含量为0.01-5mol%,供给式1的磷系阻燃剂, 基于聚合物,磷原子的含量为500-40000ppm,并且混合物共聚。 聚酯聚合物可以用阳离子染料染色,同时具有优异的阻燃性,并且可以像能够熔融纺丝的其它聚合物一样熔融纺丝。 使用聚酯聚合物的共聚酯纤维能够根据加工常规聚酯纤维的方法进行加工,并且可以用阳离子染料染色,同时具有优异的阻燃性。
    • 3. 发明授权
    • Polyester fiber having excellent light-shielding and flame retardant characteristic and textile goods using the same
    • 聚酯纤维具有优异的遮光性和阻燃特性,并使用纺织品
    • US07776945B2
    • 2010-08-17
    • US11792680
    • 2005-04-08
    • Seung Cheol YangEung Soo KimYang Kuk Son
    • Seung Cheol YangEung Soo KimYang Kuk Son
    • C08K5/53
    • D01F1/07A47H23/10B60J1/2011D01F1/04D01F6/62
    • Disclosed herein is a Polyester Fiber Having Excellent Light-Shielding and Flame Retardant Characteristic. The Polyester Fiber comprises: phosphorus-based flame retardant 0.05˜5% by weight, based on phosphorus atom; and inorganic particles having 0.05˜1 μm average particle size 1-5% by weight, based on fiber weight. Further disclosed is Textile Goods prepared from the Polyester Fiber. The polyester fiber according to the present invention is prepared from polyester polymer having Intrinsic viscosity of 0.55˜0.75 dl/g and the Intrinsic viscosity difference of between the fiber and polymer (IV drop) is within 0.03 dl/g and it exhibits the excellent flame retardant and light shielding characteristic. Therefore, the polyester fiber can be applied to fiber for clothes, light shielding curtain for a car and blackout curtain for a house and theater.
    • 本文公开了具有优异的光屏蔽和阻燃特性的聚酯纤维。 聚酯纤维包括:基于磷原子的磷基阻燃剂0.05〜5重量% 和平均粒径为0.05〜1μm的无机粒子,以纤维重量计,为1-5重量%。 进一步披露的是从涤纶纤维制成的纺织品。 根据本发明的聚酯纤维由特性粘度为0.55〜0.75dl / g的聚酯聚合物制成,纤维与聚合物之间的特性粘度差(IV滴)在0.03dl / g以内,表现出优异的火焰 阻燃和遮光特性。 因此,聚酯纤维可以用于衣服用纤维,用于汽车的遮光帘和用于房屋和剧院的遮光帘。
    • 4. 发明申请
    • TRANSPARENT COMPOSITE COMPOUND
    • 透明复合化合物
    • US20100178478A1
    • 2010-07-15
    • US12617357
    • 2009-11-12
    • Byeong-Soo BAEJungho JINSeung Cheol YANGJi Hoon KO
    • Byeong-Soo BAEJungho JINSeung Cheol YANGJi Hoon KO
    • B32B7/02C08L83/06
    • C08K3/40H01L29/78603Y10T428/23986Y10T428/24942Y10T428/2933Y10T428/2971Y10T428/31612Y10T428/31663Y10T442/2992C08L83/04
    • Provided is a non-hydrolytic transparent composite composition having excellent transparency and heat resistance, and a low thermal expansion coefficient. Particularly, the transparent composite composition includes a glass filler dispersed in a crosslinked transparent resin produced by a non-hydrolytic reaction. The non-hydrolytic transparent siloxane resin is a resin having Si—O (siloxane) bonds, a resin having at least one kind of heterometal bonds, including Si—O bonds, or the resin further containing other ingredients. When the transparent siloxane resin produced by a non-hydrolytic reaction forms a composite in combination with the glass filler, the composite realizes high transparency and heat resistance, as well as a low thermal expansion coefficient. Therefore, the transparent composite composition is useful as a substrate for thin film transistor (TFT) devices, display devices and optical devices.
    • 本发明提供透明性,耐热性优异,热膨胀系数低的非水解透明性复合组合物。 特别地,透明复合组合物包括分散在通过非水解反应制备的交联透明树脂中的玻璃填料。 非水解性透明硅氧烷树脂是具有Si-O(硅氧烷)键的树脂,具有至少一种包含Si-O键的异金属键的树脂,或还含有其它成分的树脂。 当通过非水解反应生成的透明硅氧烷树脂与玻璃填料组合形成复合物时,该复合物实现了高透明度和耐热性以及低的热膨胀系数。 因此,透明复合组合物可用作薄膜晶体管(TFT)器件,显示器件和光学器件的衬底。
    • 6. 发明申请
    • FABRIC FOR AIR-BAG, USING POLYETHYLENE TEREPHTHALATE WITH EXCELLENT HEAT RESISTANCE
    • 使用具有优异耐热性的聚乙烯三癸酸酯的空气袋织物
    • US20130089725A1
    • 2013-04-11
    • US13704838
    • 2011-05-27
    • Il-Won JungSeung-Cheol Yang
    • Il-Won JungSeung-Cheol Yang
    • D03D1/02
    • D03D1/02D01F6/62D03D15/12D10B2331/04Y10T428/249921
    • Provided is a fabric for an airbag using a polyethylene terephthalate fiber, and particularly, to a fabric for an airbag having enhanced thermal resistance and instantaneous thermal strain rate, which is manufactured using a polyethylene terephthalate fiber for an airbag manufactured by controlling the strength and elongation of the polyethylene terephthalate fiber to replace a conventional fabric for an airbag using a yarn formed of nylon 66. The fabric for an airbag including a polyethylene terephthalate fiber manufactured by spinning a polyethylene terephthalate chip having an intrinsic viscosity of 0.8 to 1.3 dl/g has thermal resistances of 0.45 to 0.65 seconds at 450° C., and 0.75 to 1.0 seconds at 350° C.
    • 本发明提供一种用于使用聚对苯二甲酸乙二醇酯纤维的气囊的织物,特别涉及一种使用聚对苯二甲酸乙二醇酯纤维制造的用于安全气囊的耐热性和瞬时热应变速率的织物,该安全气囊通过控制强度和伸长率 的聚对苯二甲酸乙二醇酯纤维,以使用由尼龙66形成的纱线代替用于气囊的传统织物。用于通过纺丝特性粘度为0.8至1.3dl / g的聚对苯二甲酸乙二醇酯芯片制造的包含聚对苯二甲酸乙二醇酯纤维的气囊的织物具有 在450℃下的热阻为0.45〜0.65秒,在350℃为0.75〜1.0秒。
    • 7. 发明申请
    • POLYETHYLENE TEREPHTHALATE FIBER FOR AIR-BAGS AND TEXTILES MADE FROM SAME
    • 用于空气袋和纺织品的聚乙烯海绵状纤维
    • US20120263401A1
    • 2012-10-18
    • US13517069
    • 2010-12-14
    • IL-Won JungSeung-Cheol YangJe-An Yu
    • IL-Won JungSeung-Cheol YangJe-An Yu
    • B65D30/04D01H1/16
    • D01F6/62B60R2021/23504D01D5/12D03D1/02D03D15/00D06M15/263D06M15/564D06M15/643D06M15/693D10B2331/04D10B2505/124
    • A polyethylene terephthalate multifilament prepared by spinning polyethylene terephthalate chips having an intrinsic viscosity of 0.8 to 1.3 is provided. In order to improve the energy absorption capability of a textile for polyethylene terephthalate air bags, a textile for air bag having an improved rupture property at a welt portion in an air bag cushion deployment test can be prepared using a polyethylene terephthalate fiber by adjusting a strength/deformation curve of the polyethylene terephthalate fiber. Here, the polyethylene terephthalate fiber has a strength/deformation curve in which the polyethylene terephthalate fiber extends by less than 4% when subjected to an initial stress of 1.0 g/d at room temperature, extends by less than 12% subjected to a medium stress of 4.5 g/d and extends by 3% or more until fibers are cut at a tensile strength of at least 7.0 g/d, and has an elongation at break of 15% or more, a carboxyl end group (CEG) content of 35 mmol/kg or less, and a single fiber thickness of 5 deniers or less.
    • 提供通过旋转特性粘度为0.8〜1.3的聚对苯二甲酸乙二醇酯芯片制备的聚对苯二甲酸乙二醇酯复丝。 为了提高聚对苯二甲酸乙二醇酯安全气囊的纺织品的能量吸收能力,可以使用聚对苯二甲酸乙二醇酯纤维通过调节强度来制备具有改善的在气囊缓冲部分试验中的边缘部分处的破裂性能的气囊用织物 /聚对苯二甲酸乙二醇酯纤维的变形曲线。 这里,聚对苯二甲酸乙二醇酯纤维具有强度/变形曲线,当在室温下经受1.0g / d的初始应力时,聚对苯二甲酸乙二醇酯纤维延伸小于4%,延伸至小于12%的中等应力 4.5g / d,延伸3%以上,直至纤维以至少7.0g / d的拉伸强度切断,断裂伸长率为15%以上,羧基端基(CEG)含量为35 mmol / kg以下,单丝纤维厚度5旦以下。
    • 8. 发明授权
    • Transparent composite compound
    • 透明复合材料
    • US08372504B2
    • 2013-02-12
    • US12617357
    • 2009-11-12
    • Byeong-Soo BaeJungho JinSeung Cheol YangJi Hoon Ko
    • Byeong-Soo BaeJungho JinSeung Cheol YangJi Hoon Ko
    • B32B9/04
    • C08K3/40H01L29/78603Y10T428/23986Y10T428/24942Y10T428/2933Y10T428/2971Y10T428/31612Y10T428/31663Y10T442/2992C08L83/04
    • Provided is a non-hydrolytic transparent composite composition having excellent transparency and heat resistance, and a low thermal expansion coefficient. Particularly, the transparent composite composition includes a glass filler dispersed in a crosslinked transparent resin produced by a non-hydrolytic reaction. The non-hydrolytic transparent siloxane resin is a resin having Si—O (siloxane) bonds, a resin having at least one kind of heterometal bonds, including Si—O bonds, or the resin further containing other ingredients. When the transparent siloxane resin produced by a non-hydrolytic reaction forms a composite in combination with the glass filler, the composite realizes high transparency and heat resistance, as well as a low thermal expansion coefficient. Therefore, the transparent composite composition is useful as a substrate for thin film transistor (TFT) devices, display devices and optical devices.
    • 本发明提供透明性,耐热性优异,热膨胀系数低的非水解透明性复合组合物。 特别地,透明复合组合物包括分散在通过非水解反应制备的交联透明树脂中的玻璃填料。 非水解性透明硅氧烷树脂是具有Si-O(硅氧烷)键的树脂,具有至少一种包含Si-O键的异金属键的树脂,或还含有其它成分的树脂。 当通过非水解反应生成的透明硅氧烷树脂与玻璃填料组合形成复合物时,该复合物实现了高透明度和耐热性以及低的热膨胀系数。 因此,透明复合组合物可用作薄膜晶体管(TFT)器件,显示器件和光学器件的衬底。