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    • 101. 发明授权
    • Reforming apparatus and method of operating the same
    • 改造设备及其运行方法
    • US08404007B2
    • 2013-03-26
    • US12514494
    • 2007-11-26
    • Naohiko MatsudaKatsuki YagiKeiji TanizakiAkira Goto
    • Naohiko MatsudaKatsuki YagiKeiji TanizakiAkira Goto
    • B01J7/00B01J8/00
    • C01B3/384C01B2203/0233C01B2203/0816C01B2203/1288C01B2203/1294
    • An object of the present invention is to provide a reforming apparatus and the like capable of uniformly mixing water (steam) and a raw material together, of preventing the precipitation of carbon without using a temperature controller, and of efficiently heating the water and the mixture by heating gas. Accordingly, the reforming apparatus has the following configuration. The reforming apparatus includes: a first vaporizer (05) that is cylindrically shaped and includes a first flow passage; a second vaporizer (06) that is cylindrically shaped and includes a second flow passage; a duct (027) that connects an outlet of the first flow passage to an inlet of the second flow passage; a raw-material mixing portion (028) formed at a certain point of the duct. The first vaporizer and the second vaporizer are concentrically disposed. An interstice between the first vaporizer and the second vaporizer serves as a heating-gas flow passage (024). In the first vaporizer, water (021) flowing through the first flow passage is heated by heating gas, and thereby is turned into steam. In the raw-material mixing portion, a mixture is obtained by mixing a raw material with the steam. In the second vaporizer, the mixture flowing through the second flow passage is heated by the heating gas and thereby is turned into superheated steam. The superheated steam flows through a reforming-catalyst layer (03).
    • 本发明的目的是提供一种能够将水(蒸汽)和原料均匀地混合在一起以防止碳沉淀而不使用温度控制器并且有效地加热水和混合物的重整装置等 通过加热气体。 因此,重整装置具有以下结构。 重整装置包括:第一蒸发器(05),其为圆柱形并且包括第一流动通道; 第二蒸发器(06),其为圆柱形并包括第二流动通道; 将第一流路的出口连接到第二流路的入口的管道(027) 形成在管道的某一点的原料混合部分(028)。 第一蒸发器和第二蒸发器同心地设置。 第一蒸发器和第二蒸发器之间的间隙用作加热气体流动通道(024)。 在第一蒸发器中,流过第一流路的水(021)被加热气体加热,从而变成蒸汽。 在原料混合部中,通过将原料与蒸汽混合得到混合物。 在第二蒸发器中,流过第二流动通道的混合物被加热气体加热,从而变成过热蒸汽。 过热蒸汽流过重整催化剂层(03)。
    • 103. 发明授权
    • Ion generator
    • 离子发生器
    • US08355237B2
    • 2013-01-15
    • US13026674
    • 2011-02-14
    • Kazuo KotsujiKazuyoshi OnezawaYoshinari FukadaAkira Goto
    • Kazuo KotsujiKazuyoshi OnezawaYoshinari FukadaAkira Goto
    • H01T23/00
    • H01T23/00
    • A maintenance operation of an ion generator can be easily performed. A device main body has an inner case and an outer case, and the inner case having a support block and an air supply pipe is inserted into the outer case. An opposite electrode is detachably mounted in the support block from a front side of the device main body, and a discharge needle unit is detachably mounted from a reversed direction thereto. The discharge needle unit has a holder, in which the discharge electrode is provided, and a sleeve, which forms an ion generating space between the opposite electrode and the sleeve, is detachably mounted in the holder. Air supplied from an outside is supplied to the ion generating space via a flow path in the air supply pipe.
    • 离子发生器的维护操作可以容易地进行。 装置主体具有内壳和外壳,并且具有支撑块的内壳体和供气管插入外壳中。 相对电极从装置主体的前侧可拆卸地安装在支撑块中,并且排出针单元从其相反的方向可拆卸地安装。 放电针单元具有设置有放电电极的保持器,并且在相对电极和套筒之间形成离子产生空间的套筒可拆卸地安装在保持器中。 从外部供给的空气经由供气管的流路供给到离子产生空间。
    • 104. 发明授权
    • Image management system, report creation terminal, medical image management server, and image management method
    • 图像管理系统,报告创建终端,医学图像管理服务器和图像管理方法
    • US08233750B2
    • 2012-07-31
    • US12062209
    • 2008-04-03
    • Maki MinakuchiKenichi NiwaAkira GotoIchirou Maeda
    • Maki MinakuchiKenichi NiwaAkira GotoIchirou Maeda
    • G06K9/54G06K9/00
    • G06F19/321G06F19/00G16H15/00
    • Enhanced image data is stored, and medical image data contained in the enhanced image data and a screen for creating an interpretation report are displayed on a monitor. In response to a linking operation, link data containing image specification information specifying medical image data to link in the enhanced image data is generated and included into data of the interpretation report. In response to an operation of requesting linked medical image, based on the link data, medical image data indicated by the image specification information within the enhanced image data is specified from the enhanced image data, and the specified medical image data is outputted to a requesting destination of the linked medical image. Thus, a link can be set to medical image data that is one data element within enhanced image data, and only a linked data row can be extracted and read from the enhanced image data.
    • 存储增强图像数据,并且将包含在增强图像数据中的医学图像数据和用于创建解释报告的屏幕显示在监视器上。 响应于链接操作,生成包含指定增强图像数据中链接的医学图像数据的图像指定信息的链接数据并将其包含在解释报告的数据中。 响应于请求相关联的医学图像的操作,基于链接数据,从增强图像数据中指定由增强图像数据内的图像指定信息指示的医学图像数据,并将指定的医学图像数据输出到请求 相关医学图像的目的地。 因此,可以将连接设置为作为增强图像数据内的一个数据元素的医学图像数据,并且可以仅从增强图像数据中提取和读取链接的数据行。
    • 105. 发明申请
    • SEAM WELDING METHOD AND MACHINE THEREFOR
    • SEAM焊接方法及其机械
    • US20110233173A1
    • 2011-09-29
    • US13052383
    • 2011-03-21
    • Mitsugu KanekoEisaku HasegawaAkira Goto
    • Mitsugu KanekoEisaku HasegawaAkira Goto
    • B23K11/08
    • B23K11/061B23K11/002B23K2103/04
    • A seam welding machine includes a first roller electrode and a second roller electrode that hold a layered body formed by layering a plurality of workpieces. The first roller electrode is in contact with a thinnest workpiece, which is disposed on an outermost side of the layered body. The seam welding machine has a current-branching electrode held in contact with the thinnest workpiece, and which is charged with a polarity opposite to that of the first roller electrode. Accordingly, when an electric current is applied between the first roller electrode and the second roller electrode that hold the layered body, a branch electric current is applied from the first roller electrode to the current-branching electrode, or a branch electric current is applied from the current-branching electrode to the first roller electrode.
    • 缝焊机包括第一辊电极和第二辊电极,其保持通过层叠多个工件而形成的层叠体。 第一辊电极与设置在层叠体的最外侧的最薄的工件接触。 缝焊机具有与最薄工件保持接触的电流分支电极,并且以与第一辊电极的极性相反的极性被充电。 因此,当在保持层叠体的第一辊电极和第二辊电极之间施加电流时,从第一辊电极向分流电极施加分支电流,或者从 电流分支电极到第一辊电极。
    • 107. 发明申请
    • RESISTANCE WELDING METHOD AND RESISTANCE WELDING APPARATUS
    • 电阻焊接方法和电阻焊接装置
    • US20100243616A1
    • 2010-09-30
    • US12749771
    • 2010-03-30
    • Akira Goto
    • Akira Goto
    • B23K11/30B23K11/00
    • B23K11/115B23K11/0026B23K11/30
    • A resistance welding apparatus includes a welding gun having a first electrode tip serving as a first welding electrode, a second electrode tip serving as a second welding electrode, and a current branching electrode. The current branching electrode has an annular shape and is disposed in surrounding relation to the first electrode tip. The first electrode tip and the current branching electrode abut against a thinnest workpiece disposed on an outermost side of a stacked assembly that is resistance-welded by the resistance welding apparatus, and have opposite polarities to each other. When an electric current is passed from the first electrode tip to the second electrode tip and through the stacked assembly, a branched electric current flows from the first electrode tip to the current branching electrode.
    • 电阻焊接装置包括具有作为第一焊接电极的第一电极端头,作为第二焊接电极的第二电极端子和电流分支电极的焊枪。 当前的分支电极具有环形形状并且围绕第一电极尖端设置。 第一电极头和电流分支电极抵靠设置在由电阻焊接装置进行电阻焊接的层叠组件的最外侧的最薄的工件,并且彼此具有相反的极性。 当电流从第一电极尖端通过第二电极尖端并通过堆叠组件时,分支电流从第一电极尖端流到电流分支电极。
    • 108. 发明申请
    • REFORMING APPARATUS AND METHOD OF OPERATING THE SAME
    • 改装装置及其操作方法
    • US20100055030A1
    • 2010-03-04
    • US12514494
    • 2007-11-26
    • Naohiko MatsudaKatsuki YagiKeiji TanizakiAkira Goto
    • Naohiko MatsudaKatsuki YagiKeiji TanizakiAkira Goto
    • C01B3/16B01J8/04C01B3/02B01D1/00B01D5/00
    • C01B3/384C01B2203/0233C01B2203/0816C01B2203/1288C01B2203/1294
    • An object of the present invention is to provide a reforming apparatus and the like capable of uniformly mixing water (steam) and a raw material together, of preventing the precipitation of carbon without using a temperature controller, and of efficiently heating the water and the mixture by heating gas. Accordingly, the reforming apparatus has the following configuration. The reforming apparatus includes: a first vaporizer (05) that is cylindrically shaped and includes a first flow passage; a second vaporizer (06) that is cylindrically shaped and includes a second flow passage; a duct (027) that connects an outlet of the first flow passage to an inlet of the second flow passage; a raw-material mixing portion (028) formed at a certain point of the duct. The first vaporizer and the second vaporizer are concentrically disposed. An interstice between the first vaporizer and the second vaporizer serves as a heating-gas flow passage (024). In the first vaporizer, water (021) flowing through the first flow passage is heated by heating gas, and thereby is turned into steam. In the raw-material mixing portion, a mixture is obtained by mixing a raw material with the steam. In the second vaporizer, the mixture flowing through the second flow passage is heated by the heating gas and thereby is turned into superheated steam. The superheated steam flows through a reforming-catalyst layer (03).
    • 本发明的目的是提供一种能够将水(蒸汽)和原料均匀地混合在一起以防止碳沉淀而不使用温度控制器并且有效地加热水和混合物的重整装置等 通过加热气体。 因此,重整装置具有以下结构。 重整装置包括:第一蒸发器(05),其为圆柱形并且包括第一流动通道; 第二蒸发器(06),其为圆柱形并包括第二流动通道; 将第一流路的出口连接到第二流路的入口的管道(027) 形成在管道的某一点的原料混合部分(028)。 第一蒸发器和第二蒸发器同心地设置。 第一蒸发器和第二蒸发器之间的间隙用作加热气体流动通道(024)。 在第一蒸发器中,流过第一流路的水(021)被加热气体加热,从而变成蒸汽。 在原料混合部中,通过将原料与蒸汽混合得到混合物。 在第二蒸发器中,流过第二流动通道的混合物被加热气体加热,从而变成过热蒸汽。 过热蒸汽流过重整催化剂层(03)。