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    • 1. 发明专利
    • Ceramic used for fuel filter, fuel filter using ceramic, and fuel treating device using ceramic
    • 用于燃料过滤器的陶瓷,使用陶瓷的燃料过滤器和使用陶瓷的燃料处理装置
    • JP2003328889A
    • 2003-11-19
    • JP2002137183
    • 2002-05-13
    • Kentaro Yamaguchi謙太郎 山口
    • YAMAGUCHI KENTARO
    • F02M37/22B01D35/02B01D39/20C04B33/13C04B33/132
    • Y02P40/69
    • PROBLEM TO BE SOLVED: To provide ceramics used for a fuel filter for activating fuel and the like, and improving combustion efficiency, and a fuel treating device using the ceramics. SOLUTION: Ceramic is obtained by mixing a base material, an organic material group, and a mineral group with blend water, and sintering them. Clay is used as the base material, and ceramics X, Y obtained by using the organic material group and the mineral group are mixed with the base material, namely clay, again, and sintered, so as to obtain a ceramic Z. This fuel treating device using the ceramic Z comprises a fuel tank installed to an interference wave generator, and a fuel filter using the ceramic installed to the interference wave generator. The interference wave generator comprises four layers of disc-like plates filled and held with a different ceramic powder. COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供用于激活燃料等的燃料过滤器和提高燃烧效率的陶瓷,以及使用该陶瓷的燃料处理装置。 解决方案:通过将基础材料,有机材料组和矿物基团与掺合水混合并烧结来获得陶瓷。 将粘土用作基材,通过使用有机材料基团和矿物基团得到的陶瓷X,Y再次与基材(即粘土)混合并烧结,从而获得陶瓷Z。该燃料处理 使用陶瓷Z的装置包括安装到干扰波发生器的燃料箱和使用安装在干扰波发生器上的陶瓷的燃料过滤器。 干涉波发生器包括四层圆盘形板,填充并保持不同的陶瓷粉末。 版权所有(C)2004,JPO
    • 2. 发明专利
    • Walking assisting device
    • 行车辅助装置
    • JP2010162114A
    • 2010-07-29
    • JP2009005692
    • 2009-01-14
    • KirakuenOsaka City UnivYoshinori SaitoShima Seisakusho:KkKentaro Yamaguchi公立大学法人大阪市立大学健太郎 山口株式会社島製作所社会福祉法人きらくえん芳徳 齋藤
    • SHIMA YOSHIHIROSAITO YOSHINORIICHIKAWA REIKOYAMASHITA HIDETOSHIYAMAGUCHI KENTAROMIURA KEN
    • A61H3/04A63B23/04
    • PROBLEM TO BE SOLVED: To provide a walking assisting device which enables even a patient who has difficulty in walking on his/her own or the like to easily lie down on a bed or a sit on a toilet seat without turning the walking assisting device keeping the state of arriving at the vicinity of the bet or the toilet seat using the walking assisting device. SOLUTION: For the walking assisting device, a frame body to be roughly U-shaped in the plan view is formed by a connection part connecting one left or right frame part and the other frame part at the front lower part, a pair of left and right traveling wheels are provided on the front and rear at the lower part of the frame body, either front or rear traveling wheel is turned to a free wheel, and steering is made possible by a handle provided on the upper end of the frame part. By positioning at least the part near the center of the connection part below a pivoting part at which the traveling wheel is pivoted to the frame body, an operator (patient or the like) operating the walking assisting device can easily pass through the connection part. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种步行辅助装置,即使是难以在自己等身上行走的患者容易躺在床上或坐在马桶座上而不转动步行 辅助装置使用步行辅助装置保持到达赌注附近的状态或马桶座圈。 解决方案:对于行走辅助装置,在平面图中大致U形的框架体由连接一个左右框架部分的连接部分和在前下部分的另一个框架部分形成 左右行驶轮的前后方向设置在车架主体的下部,前后车轮转向自由轮,通过设置在车架的上端的把手可以进行转向 框架部分。 通过将连接部分的中心附近的部分至少定位在行走轮枢转到框体的枢转部下方,操作步行辅助装置的操作者(患者等)可以容易地通过连接部。 版权所有(C)2010,JPO&INPIT
    • 3. 发明专利
    • Multivalent probe for mass analysis
    • 用于质量分析的多元探针
    • JP2010133909A
    • 2010-06-17
    • JP2008335877
    • 2008-12-02
    • Kentaro Yamaguchi健太郎 山口
    • YAMAGUCHI KENTARODANJO HIROSHIITO FUMIHIRO
    • G01N27/62
    • PROBLEM TO BE SOLVED: To provide an ionization method for mass-analyzing bio-polymeric compounds including high-mass protein.
      SOLUTION: To amino acid, peptide, protein, nucleic acid, or sugar, and other substances (biomolecular compounds), a plurality of functional groups having electric charge, that is probes, are added in large numbers on temperate conditions, thereby generating multivalent ions of monovalence, bivalence, etc. which are provided to mass analysis. Each of the probes includes three portions, a charged site, a linker, and an anchoring site, and these are linked by covalent bonding.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供用于质量分析包括高质量蛋白质的生物聚合物的离子化方法。 解决方案:对于氨基酸,肽,蛋白质,核酸或糖和其他物质(生物分子化合物),在温和条件下大量加入多个具有电荷的官能团(即探针),从而 产生提供给质量分析的单价,二价等的多价离子。 每个探针包括三个部分,带电部位,接头和锚定位点,并且它们通过共价键连接。 版权所有(C)2010,JPO&INPIT
    • 4. 发明专利
    • Liquid helium recondensation device and method for analytical superconductive magnet
    • 液体超声波再生装置及分析超导磁体的方法
    • JP2007051850A
    • 2007-03-01
    • JP2005238892
    • 2005-08-19
    • Japam Thermal Engineering Co LtdKentaro Yamaguchi健太郎 山口日本サーマルエンジニアリング株式会社
    • YAMAGUCHI KENTAROSAHO RYOJIMORIYAMA MASATO
    • F25B9/02
    • F25B2400/17
    • PROBLEM TO BE SOLVED: To provide a liquid He recondensation device for analytical superconductive magnet, capable of circulating and using liquid helium (He) and cooling an analytical superconductive magnet at ordinary pressure to perform analysis without transmission of vibration of a cryogenic freezer thereto. SOLUTION: The liquid He recondensation device comprises a cryostat 1 including a liquid He tank and a liquid nitrogen tank provided on the analytical superconductive magnet and a liquid He recondensation tank 4 and a liquid nitrogen recondensation tank 8 for recondensing nitrogen gas and He gas vaporized from the liquid He tank and the liquid nitrogen tank into liquid nitrogen and liquid He; and a cryogenic freezer 2 provided on an upper portion of the cryostat 1. The liquid He recondensation tank and the liquid nitrogen recondensation tank are connected to the liquid He tank and to the liquid nitrogen tank by flexible pipes 9, respectively, to circulate the liquid nitrogen and the liquid He, and vibration preventive means 14 and 15 are provided between the freezer and the cryostat. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了提供能够循环使用液氦(He)并在常压下冷却分析超导磁体的分析超导磁体的液体He再冷凝装置,以在不传递低温冷冻机的振动的情况下进行分析 于此。 解决方案:液体He再冷凝装置包括:低温恒温器1,其包括液体He罐和设置在分析超导磁体上的液氮罐,液体He再冷凝槽4和用于再冷凝氮气的液氮再冷凝罐8 气体从液体He罐和液氮罐蒸发成液氮和液体He; 以及设置在低温恒温器1的上部的低温冷冻器2.液体He再冷凝槽和液氮再冷凝槽分别通过柔性管9与液体He罐和液氮罐连接,使液体 氮气和液体He,以及防冻装置14和15设置在冷冻器和低温恒温器之间。 版权所有(C)2007,JPO&INPIT