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    • 1. 发明专利
    • Fiber reinforced composite material and molded product thereof
    • 纤维增强复合材料及其模制产品
    • JP2012193482A
    • 2012-10-11
    • JP2011060069
    • 2011-03-18
    • Hyogo PrefectureDoshishaMiyata Fuhaku KkToho Orimono Kk兵庫県学校法人同志社宮田布帛有限会社藤邦織物株式会社
    • FUJITA HIROYUKIFUJII TORUMATSUOKA TAKASHIMIYATA YASUJIFUJII ATSUKIFUJII KUNIO
    • D03D1/00B29C43/02D02G3/04D03D15/12
    • PROBLEM TO BE SOLVED: To provide a fiber composite material which increases the elongation of a fabric sheet made of composite fiber thread in a molding process and improves its followability to a shape of any mold in the molding process and has high shaping property and enables the fiber reinforcement and to provide a molded product thereof.SOLUTION: A fiber reinforced composite material comprises a composite fiber yarn 1 with waviness which is formed by the rolled stitch of an engaging yarn 5 of a thermoplastic synthetic fiber yarn on a carbon fiber bundle 3 and/or a natural fiber yarn 4 with these yarns being subjected to varied tension. The composite fiber yarn 1 thus obtained is used as warp and/or weft to form a fabric sheet with a prescribed size. The fabric sheet thus obtained is heated to melt the synthetic fiber yarn therein so that the synthetic fiber yarn is integrally joined to the carbon fiber bundle and/or the natural fiber yarn, thereby forming the fiber reinforced composite material. A fiber reinforced composite mold is also obtained by molding the fiber reinforced composite material into a required curved surface shape.
    • 要解决的问题:提供一种纤维复合材料,其在模制过程中增加由复合纤维线制成的织物片材的伸长率,并提高其在模制过程中对任何模具的形状的追随性,并且具有高成形性 并且使纤维增强并提供其模制产品。 解决方案:纤维增强复合材料包括由碳纤维束3和/或天然纤维丝4上的热塑性合成纤维纱线的接合纱线5的卷绕线形成的波纹的复合纤维纱线1 这些纱线经受各种张力。 将由此获得的复合纤维纱1用作经向和/或纬纱以形成具有规定尺寸的织物片。 将由此获得的织物片材加热熔化合成纤维纱线,使合成纤维纱线与碳纤维束和/或天然纤维纱线整体接合,从而形成纤维增强复合材料。 通过将纤维增强复合材料成型为所需的弯曲表面形状也可获得纤维增强复合模具。 版权所有(C)2013,JPO&INPIT
    • 2. 发明专利
    • Fiber reinforced composite fabric material and article made therefrom
    • 纤维增强复合材料及其制品
    • JP2013091870A
    • 2013-05-16
    • JP2011234464
    • 2011-10-26
    • Hyogo Prefecture兵庫県Doshisha学校法人同志社Miyata Fuhaku Kk宮田布帛有限会社Toho Orimono Kk藤邦織物株式会社
    • FUJITA HIROYUKIFUJII TORUMATSUOKA TAKASHIMIYATA YASUJIFUJII ATSUKIFUJII KUNIO
    • D04B1/14B29C43/34B29K105/08C08J5/04D02G3/04D02G3/38
    • PROBLEM TO BE SOLVED: To provide a fiber reinforced composite fabric material with high strength and high elastic modulus capable of being formed into a complicated curving shape or a deep drawing shape without damaging fiber even when carbon fiber is used.SOLUTION: A fiber reinforced composite fabric material is obtained by the steps of: subjecting a carbon fiber bundle 3 to rolling stitch and engagement with an engaging yarn 4 of thermoplastic synthetic fiber yarn to form a composite fiber yarn 1 with these yarns varying their tensions; and weaving the composite fiber yarn 1 as warp and/or weft into a fabric sheet with a prescribed size. Preferably, the fabric material is obtained by the steps of: parallelling one or plural of the carbon fiber bundle 3 bundling multifilament with a parallelling yarn 5 made of thermoplastic synthetic fiber yarn comprising nylon, polypropylene and polyester; and subjecting the parallelled yarn to rolling stitch and engagement with an engaging yarn 4 of thermoplastic, synthetic, monofilament fiber yarn with these yarns varying their tensions.
    • 要解决的问题:提供具有高强度和高弹性模量的纤维增强复合织物材料,即使在使用碳纤维时也能形成复杂的弯曲形状或深拉伸形状而不损伤纤维。 解决方案:通过以下步骤获得纤维增强复合织物材料:使碳纤维束3进行滚动线圈并与热塑性合成纤维纱线的接合纱线4接合以形成复合纤维纱线1,这些纱线变化 他们的紧张 并将复合纤维纱线1作为经纱和/或纬纱编织成具有规定尺寸的织物片材。 优选地,通过以下步骤获得织物材料:将一根或多根碳纤维束3捆扎复丝与由尼龙,聚丙烯和聚酯构成的热塑性合成纤维纱线制成的平行纱线5并联; 并且使平行的纱线进行滚动线圈并与热塑性,合成的单丝纤维纱线的接合纱线4接合,这些纱线改变其张力。 版权所有(C)2013,JPO&INPIT
    • 4. 发明专利
    • Method of manufacturing regenerated carbon fiber
    • 制造再生碳纤维的方法
    • JP2013147545A
    • 2013-08-01
    • JP2012007831
    • 2012-01-18
    • Doshisha学校法人同志社Fukuokaken Kankyo Hozen Kosha財団法人福岡県環境保全公社
    • FUJII TORUOKUBO KAZUYANAKAMURA HIROYASUHARIE SHUNSAKU
    • C08J11/12F27B7/10F27B7/32F27B7/33F27B7/34F27B7/36
    • Y02W30/703
    • PROBLEM TO BE SOLVED: To provide a method of manufacturing a regenerated carbon fiber by which an industrially practical high quality regenerated carbon fiber can be continuously taken out from a waste CFRP, energy required to thermally decompose the waste CFRP can be minimized and explosion of an unburnt gas produced by the thermal decomposition of a matrix resin of the waste CFRP cannot occur.SOLUTION: The inside of a kiln body 3 of a rotary kiln 1a is heated to a thermal decomposition treatment temperature of a matrix resin by a heating burner 6, a charge port shutter in a state closed to meet a charge timing is opened to charge a waste CFRP 9a from a charge part 4a and the matrix resin is thermally decomposed while the waste CFRP is transported to the outlet side of the kiln body to obtain a thermal decomposition treatment residue 9b comprising a carbon fiber. When the thermal decomposition treatment residue reaches a discharge port 51b of the kiln body, a discharge port shutter 52 in a state closed to meet a discharge timing is opened to discharge the thermal decomposition treatment residue from the discharge port.
    • 要解决的问题:为了提供一种制造再生碳纤维的方法,通过该再生碳纤维可以从废CFRP连续地取出工业上实用的高质量再生碳纤维,能够使废物CFRP热分解所需的能量最小化, 不会发生通过废CFFR的基体树脂的热分解产生的未燃烧气体。解决方案:通过加热燃烧器6将回转窑1a的窑体3的内部加热至基体树脂的热分解处理温度, 打开关闭以满足充电正时状态的充电口挡板,从充电部4a充电废弃CFRP 9a,并且将基体树脂热分解,同时将废CFRP输送到窑体的出口侧,以获得 包含碳纤维的热分解处理残渣9b。 当热分解处理残渣到达窑体的排出口51b时,打开处于关闭以满足排出时间的状态的排出口闸板52,从排出口排出热分解处理残渣。
    • 9. 发明专利
    • Device and method for evaluating flex durability of flange of steeply inclined conveyor belt
    • 用于评估直接输入输送带法兰的弯曲耐久性的装置和方法
    • JP2011257188A
    • 2011-12-22
    • JP2010130236
    • 2010-06-07
    • DoshishaYokohama Rubber Co Ltd:The学校法人同志社横浜ゴム株式会社
    • KO TAKESHIFUJII TORUOKUBO KAZUYA
    • G01N3/34B65G15/40
    • PROBLEM TO BE SOLVED: To provide a device and method for evaluating flex durability of a flange of a steeply inclined conveyor belt, which is capable of performing accurate evaluation by setting a test sample of the flange to a condition approximating an actual use state.SOLUTION: One end of a test sample T of a flange is installed fixedly to a base plate 2a, and the other end of the test sample T is held by an end holding tool 9, and a swing rod 6 is rotatably and pivotally supported by a swing support shaft 7 fixed to the base plate 2a, and a long hole 6a is used to attach the end holding tool 9 to a front end of the swing rod 6 so as to allow the end holding tool 9 to rotate and move in a lengthwise direction of the swing rod 6, whereby the test sample T is set. By swinging the swing rod 6 with the swing support shaft 7 as the center via a rotating rod 4 and a connection rod 5 by rotating of a motor 3, a flange base 20 of the set test sample T is pressed to an arcuate surface of a winding member 12 installed on the base plate 2a to bend the test sample T.
    • 要解决的问题:提供一种用于评估陡倾斜传送带的凸缘的挠性耐久性的装置和方法,其能够通过将法兰的测试样品设置为接近实际使用的条件来进行精确评估 州。

      解决方案:法兰的测试样品T的一端固定地安装在基板2a上,并且测试样品T的另一端由端部固定工具9保持,并且摆动杆6可旋转地 由固定在基板2a上的摆动支承轴7枢轴支承,长孔6a用于将端部保持工具9固定在摆动杆6的前端,以使端部保持工具9旋转, 在摆杆6的长度方向上移动,由此测试样品T被设定。 通过旋转杆4和连接杆5通过旋转马达3摆动作为中心的摆动支撑轴7的摆动杆6,将设定的测试样品T的凸缘基座20按压到 卷绕构件12安装在基板2a上以使测试样品T弯曲。版权所有:(C)2012,JPO&INPIT