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    • 8. 发明专利
    • Slide seal and seal structure
    • 滑动密封和密封结构
    • JP2014109322A
    • 2014-06-12
    • JP2012264115
    • 2012-12-03
    • Kawasaki Heavy Ind Ltd川崎重工業株式会社Nissan Motor Co Ltd日産自動車株式会社
    • SUZUKI YUTAKANOMICHI KAORUNINOMIYA MAKOTOSHINOHARA MIKIYAMORIYAMA AKINOBU
    • F16J15/24F16J15/18F16K41/04
    • PROBLEM TO BE SOLVED: To provide a long-life slide seal in which a first member is smoothly movable relative to a second member.SOLUTION: In the slide seal, in which the first member being smoothly movable relative to the second member, for hermetically sealing an annular clearance between the first and second members and being fitted into an annular installation groove provided in the second or first member, there are provided a high pressure seal that slidably slide-contacts a sliding surface of the first or second member; a lubricant holding piece provided on the low-pressure side of the high pressure seal to have a first lubricant holding part which opens on the opening side of the installation groove; and a lubricant seal provided on the low-pressure side of the first lubricant holding part for slidably slide-contacting the sliding surface.
    • 要解决的问题:提供一种长寿命的滑动密封件,其中第一构件相对于第二构件平滑地移动。解决方案:在滑动密封件中,第一构件相对于第二构件平滑地移动,用于气密 密封第一和第二构件之间的环形间隙并且装配到设置在第二或第一构件中的环形安装槽中,设置有高压密封,其可滑动地接触第一或第二构件的滑动表面; 润滑剂保持件,设置在高压密封件的低压侧,以具有在安装槽的开口侧开口的第一润滑剂保持部; 以及设置在第一润滑剂保持部的低压侧的滑动接触滑动面的润滑剂密封件。
    • 9. 发明专利
    • Pressure detection device
    • 压力检测装置
    • JP2009058366A
    • 2009-03-19
    • JP2007225741
    • 2007-08-31
    • Nissan Motor Co Ltd日産自動車株式会社
    • SHINOHARA MIKIYAMORIYAMA AKINOBU
    • G01L19/04
    • PROBLEM TO BE SOLVED: To provide a pressure detection device that will not have dew condense, even if it detects the pressure of fuel gas and oxidizer gas of high temperature and high humidity.
      SOLUTION: A fuel cell system 1 controls the pressure adjustment of air and hydrogen gas, while detecting the pressure on the upstream side A of a cathode inlet of a fuel cell, and the pressure on the upstream side B of an anode inlet, respectively. The pressure detection device is constituted, on the cathode side, a pressure inlet pipe 14a connected to the pressure extract port in a part A of Fig. 1, a pressure detecting means 15a, connected to the other end of this pressure inlet pipe 14a, and at least one of a warming means 16 for warming the pressure detecting means 15a and a cooling means 17 for cooling the pressure inlet pipe 14a. The pressure detecting device comprises, also on the anode side, a pressure inlet pipe 14b, a pressure detecting means 15b, and at least one of the warming means 16 and the cooling means 17.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:即使检测到高温高湿的燃料气体和氧化剂气体的压力,也能够提供不会露出冷凝的压力检测装置。 解决方案:燃料电池系统1控制空气和氢气的压力调节,同时检测燃料电池的阴极入口的上游侧A的压力,以及阳极入口的上游侧B的压力 , 分别。 压力检测装置在阴极侧构成与图1的A部分的压力提取口连接的压力入口管14a。 1,与该压力导入管14a的另一端连接的压力检测单元15a,以及用于加压压力检测单元15a的加温单元16和冷却压力导入管14a的冷却单元17中的至少一个。 压力检测装置也在阳极侧包括压力入口管14b,压力检测装置15b以及加温装置16和冷却装置17中的至少一个。版权所有(C)2009,JPO&INPIT
    • 10. 发明专利
    • Pressure detecting device
    • 压力检测装置
    • JP2008008712A
    • 2008-01-17
    • JP2006178255
    • 2006-06-28
    • Nissan Motor Co Ltd日産自動車株式会社
    • SHINOHARA MIKIYA
    • G01L19/04H01M8/04
    • Y02E60/50
    • PROBLEM TO BE SOLVED: To secure pressure detection accuracy by thawing quickly a pressure-sensitive surface even in an environment below the freezing point.
      SOLUTION: This pressure detection device 1 equipped with a pressure-sensitive diaphragm 4 in a pressure detection chamber 3 detects a strain generated in the pressure-sensitive diaphragm 4 by a gas pressure, and outputs the result as an electric signal. In this case, a heater plate 6 is installed on a position contactable through water drops W, oppositely to the pressure-sensitive diaphragm 4. To put it concretely, the interval between the heater plate 6 and the pressure-sensitive diaphragm 4 is 1.6 mm or less and 0.05 mm or more.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:即使在低于冰点的环境中,通过快速解冻压敏表面来确保压力检测精度。 解决方案:在压力检测室3中配备有压敏膜4的压力检测装置1通过气体压力检测压敏膜4中产生的应变,并将其作为电信号输出。 在这种情况下,加热板6安装在通过与压敏膜4相对的水滴W可接触的位置上。具体地说,加热板6和压敏膜4之间的间隔为1.6mm 以下且0.05mm以上。 版权所有(C)2008,JPO&INPIT