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    • 1. 发明专利
    • Apparatus for pressurizing inside of raw tire
    • 用于加压原始轮胎内部的装置
    • JP2007268931A
    • 2007-10-18
    • JP2006099639
    • 2006-03-31
    • Kobe Steel Ltd株式会社神戸製鋼所
    • SHIBATA SHOJIMITAMURA HISASHIOGAWA KATSUMI
    • B29C33/02B29C35/02B29L30/00
    • PROBLEM TO BE SOLVED: To provide an apparatus for pressurizing the inside of a raw tire of a bladder-less type capable of preventing surely a pressurizing medium from leaking. SOLUTION: The apparatus 1 for pressurizing the inside of the raw tire has two supporting plates 10 and 20 arranged on both sides of the raw tire 4 pinched between them in the axial direction of the raw tire 4, and the shape of the raw tire 4 is held by feeding compressed air into these inner spaces 35 and pressurizing them. Annular sealing members 40a and 40b expanding by feeding inside the compressed air are respectively fitted to the two supporting plates 10 and 20. The raw tire 4 is supported by the two supporting plates 10 and 20 without a gap by expanding the sealing members 40a and 40b. COPYRIGHT: (C)2008,JPO&INPIT
    • 解决方案:提供一种能够确保加压介质泄漏的无气囊型的生胎的内部加压的装置。 解决方案:用于加压生轮胎内部的装置1具有两个支承板10和20,它们在生轮胎4的轴向方向上夹在它们之间的生轮胎4的两侧设置有两个支撑板10和20 通过将压缩空气送入这些内部空间35并对其进行加压来保持生轮胎4。 通过在压缩空气内进给而膨胀的环状密封构件40a,40b分别安装在两个支撑板10和20上。生轮胎4由两个支撑板10和20支撑,通过使密封构件40a和40b膨胀而无间隙 。 版权所有(C)2008,JPO&INPIT
    • 2. 发明专利
    • Tire conveying apparatus
    • 轮胎输送装置
    • JP2007268932A
    • 2007-10-18
    • JP2006099640
    • 2006-03-31
    • Kobe Steel Ltd株式会社神戸製鋼所
    • SHIBATA SHOJIMITAMURA HISASHIOGAWA KATSUMI
    • B29D30/00
    • PROBLEM TO BE SOLVED: To provide a tire conveying apparatus reduced in manufacturing cost and weight by a simple constitution.
      SOLUTION: The tire conveying apparatus 1 has: a holding plate 10 for holding a raw tire 4; and a moving mechanism for moving the holding plate 10 in the vertical direction and the horizontal direction. An annular expansion holding member 40 expanding by feeding a pressurizing medium to the inside is fitted on the holding plate 10. The raw tire 4 is held by the holding plate 10 by being pressed from the inside in the radial direction by an expansion of the expansion holding member 40. The raw tire 4 is conveyed in the vertical direction and in the horizontal direction by this constitution.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:通过简单的结构提供制造成本和重量降低的轮胎输送装置。 < P>解决方案:轮胎输送装置1具有:保持生轮胎4的保持板10; 以及用于沿着垂直方向和水平方向移动保持板10的移动机构。 通过将加压介质供给到内部而膨胀的环状膨胀保持构件40嵌合在保持板10上。生轮胎4由保持板10沿径向从内侧按压而通过膨胀膨胀 通过这种构造,生轮胎4在垂直方向和水平方向上被输送。 版权所有(C)2008,JPO&INPIT
    • 3. 发明专利
    • Production device of fiber-reinforced resin strand
    • 纤维增强树脂生产设备
    • JP2008155589A
    • 2008-07-10
    • JP2006350024
    • 2006-12-26
    • Kobe Steel Ltd株式会社神戸製鋼所
    • TADAI NAOYUKIOGAWA KATSUMI
    • B29C47/02B29B11/16B29C47/08B29K105/08
    • B29C70/504B29B15/122
    • PROBLEM TO BE SOLVED: To provide a production device of fiber-reinforced resin strand, wherein a deviating angle of a roller for giving twist to fiber-reinforced resin strand can easily be controlled and there is equipped with an angle controlling device of a simple structure.
      SOLUTION: The construction of the device is as follows: the first axis-roller supporting material 20 in a device L
      A controlling a deviating angle of a roller of a production device of fiber-reinforced resin strand is rounded around the axis core of the first driving shaft 24 crossing with the first axis-roller supporting axis 11a of the first twisting roller 11, only whereby the deviating angle of the first twisting roller 11 can be controlled, and the second axis-roller supporting material 30 is rounded around the axis core of the second driving shaft 34 crossing the second roller spindle 12a of the second twisting roller 12, only whereby a deviating angle of the second twisting roller 12 can be controlled.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 解决的问题:提供一种纤维增强树脂股线的制造装置,其特征在于,可以容易地控制用于对纤维强化树脂股线进行扭转的辊的偏离角度,并且配备有角度控制装置 一个简单的结构。 解决方案:该装置的结构如下:控制纤维增强树脂生产装置的辊的偏角的装置中的第一轴承辊支撑材料20 线束绕第一驱动轴24的轴芯圆周化,与第一加捻辊11的第一轴线支撑轴线11a交叉,从而可以控制第一加捻辊11的偏角, 辊支撑材料30围绕与第二加捻辊12的第二辊轴12a交叉的第二驱动轴34的轴芯圆形化,从而可以控制第二加捻辊12的偏角。 版权所有(C)2008,JPO&INPIT
    • 4. 发明专利
    • Manufacturing apparatus of fiber reinforced resin strand
    • 纤维增强树脂条的制造设备
    • JP2007301759A
    • 2007-11-22
    • JP2006130555
    • 2006-05-09
    • Kobe Steel Ltd株式会社神戸製鋼所
    • TADAI NAOYUKIOGAWA KATSUMI
    • B29B11/16B29B9/06B29B9/14B29B11/10
    • B29B15/125
    • PROBLEM TO BE SOLVED: To provide a manufacturing apparatus of a fiber reinforced resin strand excellent in durability, which manufactures the fiber reinforced resin strand at a high production rate without causing sliding.
      SOLUTION: In the manufacturing apparatus of the fiber reinforced resin strand, a spreader 8 for defibrillating a reinforcing fiber bundle 3 is arranged in a crosshead 5 to which a molten resin material 2 is continuously supplied from an extruder 6, twist rollers 11a and 11b for drawing the fiber reinforced resin strand 9 comprising the resin impregnated fiber bundle out of an outlet nozzle 5a to twist the same is provided in front of the outlet nozzle 5a of the crosshead 5, twist holding rollers 12a and 12b for holding the twist of the fiber reinforced resin strand are provided in front of the twist rollers 11a and 11b, and the twist rollers 11a and 11b and the twist holding rollers 12a and 12b are formed of a metal having unvenness on their surfaces.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 解决的问题:提供一种耐久性优异的纤维增强树脂线的制造装置,其以高生产率制造纤维增强树脂线而不会产生滑动。 解决方案:在纤维增强树脂股线的制造装置中,将用于去纤维化增强纤维束3的扩张器8布置在从挤出机6连续供给熔融树脂材料2的十字头5中,加捻辊11a 11b用于将十字头5的出口喷嘴5a的出口喷嘴5a的出口喷嘴5a内的树脂浸渍纤维束的纤维增强树脂股线9拉出以使其扭曲,用于保持扭曲的捻合保持辊12a,12b 纤维增强树脂股线设置在扭转辊11a和11b的前方,并且加捻辊11a和11b以及扭曲保持辊12a和12b由其表面上具有不均匀的金属形成。 版权所有(C)2008,JPO&INPIT
    • 8. 发明专利
    • APPARATUS FOR MELTING FOOD RAW MATERIAL UNDER PRESSURE
    • JPH01196251A
    • 1989-08-08
    • JP2243988
    • 1988-02-01
    • KOBE STEEL LTD
    • KANDA TAKESHIHASHIZUME SHINJIOGAWA KATSUMIKITAGAWA KAZUO
    • A22C25/00B01J3/04
    • PURPOSE:To enable sure and stable melt-treatment of a food raw material under pressure, by connecting a pressure vessel with a back-pressure vessel in a connectable and disconnectable manner, pressurizing a food raw material in the pressure vessel and transferring the material through a heater into the back-pressure vessel taking advantage of the pressure difference. CONSTITUTION:A pressure vessel 2 and a back-pressure vessel 4 are connected with each other via a piping system 26 in a connectable and disconnectable manner and the piping system 26 is provided with a heater 5 and a cooler 6 disposed in series. A food raw material such as fish meat is introduced through a hopper 7 into the pressure vessel 2, pressurized with a compression cylinder 1 and, at the same time, the back-pressure vessel 4 is pressurized with a compression cylinder 3 to the same pressure as the vessel 2. The valves 20, 21 are opened, the piston rod 1a of the compression cylinder 1 of the pressure vessel 2 is forwarded to increase the pressure in the vessel 2, and, at the same time, the piston rod 3a of the back-pressure vessel 4 is retreated under a back pressure. The food raw material in the pressure vessel 2 is transferred through the heater 5 and the cooler 6 under pressure and the obtained molten food raw material is recovered in a container 19.
    • 9. 发明专利
    • MANUFACTURE OF FIBER REINFORCEMENT-METAL POWDER COMPOSITE BODY
    • JPS63199836A
    • 1988-08-18
    • JP20147787
    • 1987-08-11
    • KOBE STEEL LTD
    • TOMITA MASAHIROOGAWA KATSUMIMORIMOTO HIROYUKIMINAMIDE TOSHIYUKIOUCHI KENICHIRO
    • B01D37/00C22C47/00C22C47/02C22C47/06C22C47/14D21H23/22D21H27/00
    • PURPOSE:To manufacture a fiber reinforcement-metal power composite body in which a fiber reinforcement is not unevenly distributed but uniformly dispersed, by filtering a composite slurry prepared by mixing and agitating a mixed slurry of fiber reinforcement and organic solvent and a metal powder so as to remove an undisentangled aggregate. CONSTITUTION:A reinforcement 1 in short-fiber state, such as whisker of SiC or Si3N4, etc., and an organic solvent 2 such as ethanol, etc., are placed in a mixing agitating machine 3, where vibration with ultrasonic frequency is applied by means of ultrasonic vibrator 4 and agitation is also applied by means of an agitator 5, so that a mixed slurry 6 in which the reinforcement 1 in moxa-like short-fiber state is disentangled and dispersed in the organic solvent is formed. Subsequently, this mixed slurry 6 and a powder 7 of light metals such as Al, Ti, Mg, etc., or alloys thereof are charged into an agitating machine 8, so that a composite slurry 9 of the fiber reinforcement and the metal powder 7 which are entangled into a solution by means of an agitator 5a and an ultrasonic vibrator 4a is formed. This slurry 9 is fed to a tank filter 10, where an undisentangled fiber reinforcement remaining in the composite slurry is removed by means of a filter 11. The resulting composite slurry 9a is a homogeneous slurry in which disentangled fiber reinforcement and metal powder are uniformly mixed and dispersed into the organic solvent, so that a raw material for the fiber reinforcement-metal powder composite body can be obtained.