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    • 1. 发明专利
    • Measuring device, measuring system and measuring method
    • 测量装置,测量系统和测量方法
    • JP2014095512A
    • 2014-05-22
    • JP2012247401
    • 2012-11-09
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • SUGIMURA TADASHIHASHIDA YASUHIROINOUE KATSUAKI
    • F22B37/38
    • PROBLEM TO BE SOLVED: To provide a measuring device of a boiler capable of reducing a laying work and a maintenance work.SOLUTION: A measuring device 1 includes a sensor portion 10 disposed on a prescribed part of boiler equipment 2, converting a prescribed state at the part into an electric signal, and outputting the same, a measured data transmitting portion 12 disposed on a region of a temperature lower than that of the prescribed part and wirelessly transmitting a measured data based on the electric signal, and a thermoelectric couple 11 including a first end portion 11a and a second end portion 11b and generating electromotive force according to temperature difference between the first end portion 11a and the second end portion 11b, and the measured data transmitting portion 12 gets electric power from the electromotive force generated by the thermoelectric couple 11 for wireless transmitting the data.
    • 要解决的问题:提供一种能够减少铺设工作和维护工作的锅炉的测量装置。解决方案:测量装置1包括设置在锅炉设备2的规定部分上的传感器部分10,将规定状态转换为 将该部分输入到电信号中,并将其输出,设置在比规定部分的温度低的区域的测量数据发送部分12,并且基于电信号无线地发送测量数据;热电偶11,其包括 第一端部11a和第二端部11b,并且根据第一端部11a和第二端部11b之间的温度差产生电动势,并且测量数据传输部分12从由热电产生的电动势获得电力 夫妇11用于无线传输数据。
    • 2. 发明专利
    • Strength testing machine of structure
    • 强度试验机结构
    • JP2006242587A
    • 2006-09-14
    • JP2005054675
    • 2005-02-28
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • SETTA KOJIKASHIWAGI MASAHIROINOUE YOSHIAKIINOUE KATSUAKINAKAMURA TOSHIONONAKA YOSHINORIIGARI TOSHIHIDEABE TOSHIO
    • G01N3/08G01N3/04G01N3/20G01N3/24
    • PROBLEM TO BE SOLVED: To provide a strength testing machine of a structure reduced in the number of jacks for force application, having a simple small-sized compact structure, low in machine cost, capable of performing a strength test corresponding to all of loads such as shaft load, shearing load, bending load or the like.
      SOLUTION: In the strength testing machine of the structure for performing the strength test by applying load to the test target supported on a support frame by the jack, the support frame is formed as a square support frame and a load jig having an L-shaped cross section, which has the support surface of the test target formed to its inside and two mutually right-angled force application surfaces, to which load is applied from the jack, formed to its outside, is installed in an internal test target installing space to hold the test target between the support surface of the load jig and the support inner surface of the support frame and the load is applied to the force application surfaces of the load jig by the jack to be transmitted to the test target through the load jig.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了提供一种结构减少的用于强力施加的千斤顶的结构的强度试验机,具有简单的小型紧凑结构,机器成本低,能够进行对应于所有的强度试验 负载如轴负载,剪切载荷,弯曲载荷等。 解决方案:在用于通过由千斤顶对承载在支撑框架上的测试目标施加载荷进行强度测试的结构的强度测试机中,支撑框架形成为方形支撑框架和具有 L形截面,其具有形成在其内部的测试对象的支撑表面和形成于其外部的插座施加负载的两个相互直角的施力表面,安装在内部测试目标 安装空间以将测试目标保持在负载夹具的支撑表面和支撑框架的支撑内表面之间,并且负载通过千斤顶施加到负载夹具的施力表面,以通过所述插座传递到测试目标 负载夹具 版权所有(C)2006,JPO&NCIPI
    • 7. 发明专利
    • JIG FOR PREVENTING BUTT-WELDING DEFORMATION OF PLATES
    • JP2001071129A
    • 2001-03-21
    • JP25478699
    • 1999-09-08
    • MITSUBISHI HEAVY IND LTD
    • INOUE KATSUAKINAKAMURA TOSHIOINOUE YOSHIAKIWAKIYAMA JUNJI
    • B23K37/06B23K9/025B23K9/035F16B5/08
    • PROBLEM TO BE SOLVED: To prevent the residual deformation of plates by preliminarily setting a shell body of opening type at the bottom part along the neiborhood of the edge part of the plate to be welded, sticking the lower ridge part of the shell body on the plate in liquid-proof and putting coolant in the shell body. SOLUTION: The plates 4, 4 on fixed tables 2, are butt-welded at the welding parts 1, and the shell bodies 7 of the opening type at each bottom part are set in pair at the right and left sides along the edge parts of the welding parts 1, and the lower ridge parts of the shell bodies 7 are liquid-tightly stuck on the plates 4 with adhesive or tack-welding. Then, water is made to flow through a flowing inlet 8 and a drainage outlet 9 arranged at both ends of the shell body 7. Therefore, to the outside of the cooling line on the plate 4, the heat developed at the welding time, is not transfered and the heat deformation is not developed. A packing is interposed between the lower ridge part of the shell body 7 and the surface of the plate 4, and the shell body 7 is pushed toward the plate 4 and the coolant in the shell body 7 is preferably enclosed. Further, the bottom plate of the shell body 7 is formed of a material having high heat conductivity, and the lower surface of the bottom plate is closely stuck to the plate 7.
    • 10. 发明专利
    • Solid polymer type water electrolysis apparatus
    • 固体聚合物型水电解器
    • JP2010059504A
    • 2010-03-18
    • JP2008227374
    • 2008-09-04
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • INOUE KATSUAKISAKANISHI AKIHIROURAKA YASUTAKAKOSAKA KENICHIROFUKUDA NORIHIROHASHIMOTO HIDEAKITAKENOBU KOICHIMORI YASUSHIKOBAYASHI YOSHINORIKURISAKI TAKASHI
    • C25B9/00
    • PROBLEM TO BE SOLVED: To provide a solid polymer type water electrolysis apparatus in which the surface pressure of a sealing member and that of a power feed body can be adjusted easily, the assembling cost of which can be reduced and in which the sealing member can be restrained from being affected by a high temperature environment. SOLUTION: The solid polymer type water electrolysis apparatus is provided with: a membrane electrode assembly 13 having electrodes on both surfaces of a solid polymer membrane 25 being an electrolyte; the oxygen electrode-side power feed body 15 and the hydrogen electrode-side power feed body 17 between which the membrane electrode assembly 13 is interposed and through each of which an electric charge is applied; an oxygen electrode-side separator 19 and a hydrogen electrode-side separator 21 which press the oxygen electrode-side power feed body 15 and the hydrogen electrode-side power feed body 17 respectively toward the membrane electrode assembly 13; and a rubber plate 23 for sealing the peripheral part of the membrane electrode assembly 13 and that of each of the separators under the surface pressure being predetermined times as high as that of each of the power feed bodies. The spring stiffness of the rubber plate 23 in the compression direction is made to be predetermined times as high as that of the oxygen electrode-side power feed body 15 and that of the hydrogen electrode-side power feed body 17 in the compression direction. COPYRIGHT: (C)2010,JPO&INPIT
    • 解决的问题:提供一种固体聚合物型水电解装置,其中可以容易地调节密封构件和供电体的表面压力,其组装成本可以降低,并且其中 可以抑制密封构件受高温环境的影响。 解决方案:固体聚合物型水电解装置设置有:在固体聚合物膜25的两个表面上具有电极的膜电极组件13,其为电解质; 氧电极侧供电体15和氢电极侧供电体17,其间插入有膜电极组件13,并且通过其中施加电荷的氧电极侧供电体17。 将氧电极侧供电体15和氢电极侧供电体17分别压向膜电极组件13的氧电极侧隔板19和氢电极侧隔板21; 以及用于密封膜电极组件13的周边部分的橡胶板23和每个隔板的表面压力是每个馈电体的预定倍数的预定倍数。 将橡胶板23的压缩方向的弹簧刚度设定为氧电极侧供电体15和氢电极侧供电体17的压缩方向的弹簧刚度的预定倍数。 版权所有(C)2010,JPO&INPIT