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    • 51. 发明专利
    • Base material for molding fiber-reinforced plastic
    • 用于模制纤维增强塑料的基材
    • JP2014043524A
    • 2014-03-13
    • JP2012187629
    • 2012-08-28
    • Teijin Ltd帝人株式会社
    • INAGAKI YOSHIE
    • C08J5/04
    • PROBLEM TO BE SOLVED: To provide a base material for molding fiber-reinforced plastic, from which the fiber-reinforced plastic can be obtained, which plastic has excellent handleability, is formed easily into a three-dimensional shape and is excellent in mechanical properties, particularly, in impact resistance.SOLUTION: The base material for molding fiber-reinforced plastic is characterized in that a fiber to be used therein comprises a reinforcing fiber and a thermoplastic fiber, a weight ratio of (the reinforcing fiber):(the thermoplastic fiber) is 5:95 to 70:30, the thermoplastic fiber is formed from a mixture of a polycarbonate resin and a polystyrene resin, and another weight ratio of (the polycarbonate resin):(the polystyrene resin) is 95:5 to 50:50.
    • 要解决的问题:为了提供一种用于模制纤维增强塑料的基材,由此可以获得能够获得具有优异的可操作性的塑料的纤维增强塑料,容易地形成三维形状并且机械性能优异, 特别是耐冲击性。解决方案:用于成型纤维增强塑料的基材的特征在于,其中使用的纤维包括增强纤维和热塑性纤维,(增强纤维)的重量比(热塑性纤维 )为5:95〜70:30,热塑性纤维由聚碳酸酯树脂和聚苯乙烯树脂的混合物形成,(聚碳酸酯树脂)(聚苯乙烯树脂)的另一重量比为95:5〜 50。
    • 53. 发明专利
    • Process for producing recycled wholly aromatic polyamide fiber
    • 生产循环式芳香族聚酰胺纤维的方法
    • JP2014025183A
    • 2014-02-06
    • JP2012168433
    • 2012-07-30
    • Teijin Ltd帝人株式会社
    • ONISHI MASAMICHI
    • D01F6/90C08J11/08C08L77/06D01F6/80
    • Y02W30/701
    • PROBLEM TO BE SOLVED: To provide a process for producing a recycled fiber containing non-fusible particles from molded articles of para-type wholly aromatic polyamide having non-fusible particles adhered thereto or mixed therein, the recycled fiber having strength equivalent to a fiber obtained from fresh wholly aromatic polyamide.SOLUTION: When dissolving molded articles of para-type wholly aromatic polyamide having non-fusible particles adhered thereto or mixed therein, a particle diameter and a content of impurities contained in an inorganic salt used in the dissolution step are controlled below specific values to prepare a solution of para-type wholly aromatic polyamide. The para-type wholly aromatic polyamide is spun by a semi-dry, semi-wet process.
    • 要解决的问题:提供一种由粘附到其上或不混合不粘的颗粒的对位型全芳族聚酰胺的模制品制备含有不可熔颗粒的再循环纤维的方法,所述再生纤维具有与获得的纤维相当的强度 来自新鲜的全芳香族聚酰胺。溶解性:当溶解具有粘附在其上或混合有不溶性颗粒的对位型全芳族聚酰胺的模制品时,控制溶解步骤中使用的无机盐中所含的杂质的粒径和杂质含量 低于具体值以制备对位型全芳族聚酰胺的溶液。 对位型全芳族聚酰胺通过半干法,半湿法法纺丝。
    • 54. 发明专利
    • Fine fiber structure
    • 精细纤维结构
    • JP2014015694A
    • 2014-01-30
    • JP2012154722
    • 2012-07-10
    • Teijin Ltd帝人株式会社
    • TAKANO KYOSUKE
    • D04H1/4382D04H1/728H01G11/52H01M2/16
    • Y02E60/13
    • PROBLEM TO BE SOLVED: To provide a fine fiber structure which is good in ion permeability and short circuit resistance, excellent in capacity retention at a high rate, and suitable as a separator or an insulation material for a battery, an electric double layer capacitor, and a capacitor.SOLUTION: A fine fiber structure includes a porous fine fiber layer comprising polymer fine fibers having an average diameter of 50 to 3000 nm. The porous fine fiber layer has a residual solvent quantity of less than 0.1 wt%, an average pore diameter of 0.01 to 15 μm, a thickness of 0.0025 to 0.3 mm, a porosity of 20 to 90%, a basis weight of 1 to 90 g/m, a Frazier air permeability of less than 46 m/min/m, and a Macmillan number of 2 to 15.
    • 要解决的问题:为了提供离子渗透性和短路电阻良好,高速率下的容量保持性优异,适合作为电池用隔膜或绝缘材料的双电层电容器, 和电容器。解决方案:细纤维结构包括包含平均直径为50至3000nm的聚合物细纤维的多孔细纤维层。 多孔细纤维层的残留溶剂量小于0.1重量%,平均孔径为0.01〜15μm,厚度为0.0025〜0.3mm,孔隙率为20〜90%,基重为1〜90 g / m,Frazier透气度小于46m / min / m,麦克米伦数2〜15。
    • 55. 发明专利
    • Fine fiber structure
    • 精细纤维结构
    • JP2014005569A
    • 2014-01-16
    • JP2012142155
    • 2012-06-25
    • Teijin Ltd帝人株式会社
    • DEI TAKEYA
    • D04H1/4391D01D5/04D04H1/728H01G9/02H01G11/52H01M2/16
    • Y02E60/13
    • PROBLEM TO BE SOLVED: To provide a fine fiber structure in which the occurrence of tear and a damage on the surface by a burr in an electrode is prevented in manufacturing an electronic component such as a battery when making it by winding the fine fiber structure, and which is excellent in ion permeability and short circuit resistance at a time, and is suitable as a separator or an insulation material for a battery, an electric double layer capacitor, and a capacitor.SOLUTION: The fine fiber structure includes a porous fine fiber layer comprising polymer fine fibers having an average diameter of 50 to 3000 nm. The fine fiber structure has a value obtained by dividing the tear strength according to an ELMENDORF type tearing tester by the basis weight (tearing strength/basis weight) of 2.0 g/(g/m) or more, and the porous fine fiber layer has an average pore diameter of 0.01 to 15 μm, a thickness of 0.0025 to 0.3 mm, a porosity of 20 to 90%, a basis weight of 1 to 90 g/m, a Frazier air permeability of less than 46 m/min/m, and a Macmillan number of 2 to 15.
    • 要解决的问题:为了提供一种精细的纤维结构,其中通过缠绕细纤维结构来制造电池中的诸如电池的电子部件时,在电极中通过毛刺发生撕裂和表面损坏, 并且其一次具有优异的离子渗透性和短路电阻,并且适合用作电池,双电层电容器和电容器的隔膜或绝缘材料。解决方案:细纤维结构包括多孔细纤维 层包含平均直径为50〜3000nm的聚合物细纤维。 细纤维结构体的值通过将ELMENDORF型撕裂试验机的撕裂强度除以2.0g /(g / m)以上的基重(撕裂强度/单位面积重量)而得到的值,多孔性细纤维层具有 平均孔径为0.01〜15μm,厚度为0.0025〜0.3mm,孔隙率为20〜90%,基重为1〜90g / m 2,Frazier透气度小于46m / min / m ,麦克米伦数2到15。
    • 56. 发明专利
    • Process for purifying amino phenol
    • 净化氨基酚的方法
    • JP2014005244A
    • 2014-01-16
    • JP2012143118
    • 2012-06-26
    • Teijin Ltd帝人株式会社
    • KISHIZAKI OSAMUTOIDA KOZO
    • C07C213/10C07C215/76
    • PROBLEM TO BE SOLVED: To provide a process for producing amino phenol with a low sulfur concentration capable of inhibiting an occurrence of flooding due to a liquid pool inside of a distillation column and an occurrence of blockage of various piping under vacuum distillation.SOLUTION: Purified amino phenol is obtained by distilling amino phenol under conditions of a pressure at 50 mmHg (6.66 kPa) or less, a maximal value of superficial velocity of 0.1-2.0 m/s, preferably 0.3-1.3 m/s, a theoretical plate number of regular filler of 3-8, and without reflux to remove a sulfur element-containing material.
    • 要解决的问题:提供一种生产具有低硫浓度的氨基苯酚的方法,其能够抑制由于蒸馏塔内部的液池而引起的淹水的发生和在真空蒸馏下各种管道的堵塞的发生。解决方案:纯化 通过在压力为50mmHg(6.66kPa)或更低的条件下蒸馏氨基苯酚得到氨基苯酚,表观速度的最大值为0.1-2.0m / s,优选为0.3-1.3m / s,理论塔板数为 常规填料3-8,无回流除去含硫元素的材料。
    • 58. 发明专利
    • Fluorescent resin composition
    • 荧光树脂组合物
    • JP2013256580A
    • 2013-12-26
    • JP2012132940
    • 2012-06-12
    • Teijin Ltd帝人株式会社
    • MIYAKE RIOSHINAGAWA ASUKA
    • C08L101/00C08K3/18C08L69/00
    • PROBLEM TO BE SOLVED: To provide a fluorescent resin composition having improved optical characteristics aiming at improvement of LED light emission efficiency, to put it concretely, having excellent light guide properties, and to provide a molding thereof.SOLUTION: A fluorescent resin composition includes (A) a transparent resin (A component), (B) a fluorescent material (B component) fluorescing by being excited by receiving light, and (C) a light diffusion agent (C component). In the fluorescent resin composition, the weight ratio (C/B) between a content of the C component and a content of the B component satisfies following formula (1): 0.01≤C/B
    • 要解决的问题:提供一种具有改善的LED发光效率的改善的光学特性的荧光树脂组合物,具体来说具有优异的导光性能,并提供其成型。溶液:荧光树脂组合物包括( A)透明树脂(A成分),(B)通过受光激发而发荧光的荧光材料(B成分),(C)光扩散剂(C成分)。 荧光树脂组合物中,C成分的含量与B成分的含量的重量比(C / B)满足下式(1):0.01≤C/ B <1.0。
    • 59. 发明专利
    • Heat conductive polycarbonate resin composition
    • 热传导性聚碳酸酯树脂组合物
    • JP2013256579A
    • 2013-12-26
    • JP2012132939
    • 2012-06-12
    • Teijin Ltd帝人株式会社
    • ONOE SHUHEIKIN TATSUICHIRO
    • C08L69/00C08K3/04C08K5/42C08K7/06
    • PROBLEM TO BE SOLVED: To provide a heat conductive polycarbonate resin composition excellent in thermal conductivity and durability, and having an excellent thermal conductivity in a specific direction.SOLUTION: A heat conductive polycarbonate resin composition contains a polycarbonate resin, a pitch-based graphitized short fiber, and a graphite particle, wherein in the heat conductive polycarbonate resin composition, the pitch-based graphitized short fiber has an aspect ratio of 6 to 20 and a Laman spectrum parameter I/Iof 0.080 to 0.150; the graphite particle has an aspect ratio produced in the thickness and major axis directions of 10 to 50, a Laman spectrum parameter I/Iof 0.050 to 0.085, and an average particle diameter of 5 to 50 μm; a mixture of the pitch-based graphitized short fiber and the graphite particle has a BET specific surface area of ≤10 m/g; 80 to 500 pts.wt. of the graphite particle is contained based on 100 pts.wt. of the pitch-based graphitized short fiber; and 50 to 100 pts.wt. of the total of the pitch-based graphitized short fiber and the graphite particle is contained based on 100 pts.wt. of the polycarbonate resin.
    • 要解决的问题:提供导热性和耐久性优异并且在特定方向上具有优异导热性的导热性聚碳酸酯树脂组合物。解决方案:导热性聚碳酸酯树脂组合物含有聚碳酸酯树脂,沥青基石墨化短 纤维和石墨颗粒,其中在导热性聚碳酸酯树脂组合物中,基于沥青的石墨化短纤维的纵横比为6〜20,Laman光谱参数I / I为0.080〜0.150; 石墨颗粒的厚度和长轴方向的长宽比为10〜50,拉曼光谱参数I / I为0.050〜0.085,平均粒径为5〜50μm; 沥青基石墨化短纤维和石墨颗粒的混合物的BET比表面积为≤10m2 / g; 80至500磅 的石墨颗粒含量为100重量份。 的沥青基石墨化短纤维; 和50至100重量份 的基于沥青的石墨化短纤维和石墨颗粒的总和基于100重量份。 的聚碳酸酯树脂。