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    • 1. 发明专利
    • Electrolytic device
    • 电解设备
    • JP2006314958A
    • 2006-11-24
    • JP2005141892
    • 2005-05-13
    • Toshiba Corp株式会社東芝
    • IKAKURA HIROAKINAKAMURA HITOSHISATO MAKOTOUTSUNOMIYA KAZUHIRO
    • B01D17/06C25B1/00C25B9/12C25B15/08G21C19/44
    • Y02W30/882
    • PROBLEM TO BE SOLVED: To provide an electrolytic device which efficiently performs electrolytic treatment and recovers an electrolytic deposit without suspending the operation of the electrolytic device. SOLUTION: The electrolytic device 10 has a crucible 11 housing a molten salt 12, a heating means 13 heating the crucible 11, an electrode device 18 having an anode 16 and a cathode 17 housed in the crucible 11, a power circuit for electrolysis 19 supplying an electric source across the electrodes 16, 17 of the electrolytic device 18, an electrode driving device 25 driving a movable electrode 17 of the electrolytic device liftably and rotatably and a recovering device 47 recovering the electrolytic deposit deposited on the cathode 17 side by supplying the electric source to the electrodes 16, 17. The electrolytic device 18 has a truss-shaped or annular fixed electrode 16 installed immersible in the molten salt 12 in the crucible 11 and the movable electrode 17 arranged detachably inside of the fixed electrode 16. COPYRIGHT: (C)2007,JPO&INPIT
    • 解决的问题:提供一种电解装置,其有效地进行电解处理并回收电解沉积物,而不会悬浮电解装置的操作。 解决方案:电解装置10具有容纳熔融盐12的坩埚11,加热坩埚11的加热装置13,容纳在坩埚11中的阳极16和阴极17的电极装置18,用于 在电解装置18的电极16,17之间供给电源的电解19,可升降地驱动电解装置的可动电极17的电极驱动装置25和回收沉积在阴极17侧的电解沉积物的回收装置47 通过向电极16,17提供电源。电解装置18具有安装在坩埚11中的熔融盐12中浸渍的桁架状或环状的固定电极16以及可拆卸地配置在固定电极16内的可动电极17 。版权所有(C)2007,JPO&INPIT
    • 2. 发明专利
    • Apparatus for preventive maintenance/repairing of structure inside reactor
    • 用于预防性维护/修复反应器内部结构的装置
    • JP2006258827A
    • 2006-09-28
    • JP2006171423
    • 2006-06-21
    • Toshiba Corp株式会社東芝
    • SATO KATSUHIKOKIMURA MOTOHIKOSANO YUJIMUKAI SHIGEHIKOTOGASAWA YUTAKAKONDO MAKOTOIKAKURA HIROAKISHIMAMURA MITSUAKISATO TAKAFUMIKITAJIMA YASUKIUEHARA TAKUYAYODA MASAKIOCHIAI MAKOTOITO TOMOYUKI
    • G21C19/02
    • PROBLEM TO BE SOLVED: To highly maintain the integrity of a plant by improving stress from outside even in a narrow space and a complex environment within a reactor pressure vessel and executing preventive maintenance.
      SOLUTION: A support 20 on which a laser oscillator 70 and a lightguide tube 25 are mounted is installed on an operation floor 1 after a fuel assembly is removed from the interior of the reactor pressure vessel 2, and a horizontal lightguide tube 29 and a laser processing unit 73 for an annulus are installed on an upper lattice plate 3 inside the reactor pressure vessel 2. The lightguide tube 25 is connected with a mobile reflection mirror box 24, the mirror box 24 is connected with a lightguide tube mast 26, and the lightguide tube mast 26 is connected with the horizontal lightguide tube 29. A laser beam emitted from the laser oscillator 70 on the operation floor 1 is transmitted to the laser processing unit 73 for the annulus, and a processing object matter is irradiated with the laser beam from the laser processing unit 73 for the annulus to improve the stress.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:即使在反应堆压力容器内的狭窄空间和复杂环境中也能够通过改善外界的应力来高效地维持设备的完整性,并执行预防性维护。 解决方案:在从反应堆压力容器2的内部移除燃料组件之后,在操作底板1上安装有安装有激光振荡器70和光导管25的支撑件20,以及水平光导管29 并且在反应堆压力容器2内部的上格子板3上安装有用于环空的激光处理单元73.光导管25与移动反射镜盒24连接,镜盒24与光导管桅杆26连接 ,并且光导管杆26与水平光导管29连接。从操作台1上的激光振荡器70发射的激光束被传送到用于环空的激光处理单元73,并且处理对象物体被照射 来自激光处理单元73的用于环形的激光束以改善应力。 版权所有(C)2006,JPO&NCIPI
    • 10. 发明专利
    • CONTROL ROD DRIVE DEVICE FOR FAST REACTOR
    • JPH0854486A
    • 1996-02-27
    • JP19041094
    • 1994-08-12
    • TOSHIBA CORP
    • IKAKURA HIROAKI
    • G21C7/14
    • PURPOSE:To adjust the sliding resistance and leak quantity of a seal part to the optimum condition and isolate the upper mechanism of a control rod drive device from a sodium atmosphere in a unclear reactor in a very hot environment by using a sealing hollow member which presses a seal material against the surface of an extension pipe through the bulging of its internal circumference caused by the fluid pressure supplied to the inside of it. CONSTITUTION:A sealing hollow member 15 is shaped like a ring, the inside of which is a hollow structure, an extension pipe 11 goes through a hole in the center of the ring and the part facing the extension pipe 11 is a thin--walled structure 23. Then, a sealing material 24 such as expanding graphite which can be used in a very hot atmosphere is inserted into an aperture between the thin-walled structure 23 and the extension pipe 11 and is fixed with a screw 25 and a pressing jig 26. Subsequently, when, into the hollow part of the hollow member 15, gas is supplied from a gas supplying component 17 through a pipe 16, the thin-walled structure 23 expands inward and presses the sealing material 24 against the extension pipe 11 to seal up the aperture between it and an upper guide tube 4. In this process, the gas pressure is measured by a pressure gauge 18 and regulated by a pressure-regulating valve 19 in order to prevent the oversupply of the clamping force to the extension pipe 11.