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    • 2. 发明申请
    • NOZZLE STUB WORKING SYSTEM FOR REACTOR VESSEL
    • 用于反应器船的喷嘴工作系统
    • US20120027154A1
    • 2012-02-02
    • US13263938
    • 2010-05-26
    • Atsushi SugiuraTakumi HoriKenji NishikawaKen OnishiNoriaki ShimonabeSatoshi TsuzukiIkuo Wakamoto
    • Atsushi SugiuraTakumi HoriKenji NishikawaKen OnishiNoriaki ShimonabeSatoshi TsuzukiIkuo Wakamoto
    • G21C17/003G21C19/02
    • G21C17/017G21C17/003G21C17/01G21C19/14G21C19/207
    • Disclosed is a nozzle stub working system for a reactor vessel that performs work inside a nozzle stub of the reactor vessel, the nozzle stub working system for the reactor vessel including: a platform unit that is provided at an upper portion inside the reactor vessel and includes a substantially cylindrical side wall portion and a bottom portion blocking the lower end of the side wall portion; an access window that is provided at the side wall portion of the platform unit to allow the inside of the platform unit to communicate with the nozzle stub; an access window moving device that opens and closes the access window; a working device that advances from the inside of the platform unit to the inside of the nozzle stub to perform work inside the nozzle stub; and a control device that is provided at the outside of the reactor vessel and controls the access window moving device and the working device, wherein the control device drives the access window moving device to open the access window, drives the working device to perform work inside the nozzle stub, and then drives the access window moving device to close the access window after the performance of the work.
    • 公开了一种用于反应堆容器的喷嘴短截线工作系统,其在反应堆容器的喷嘴短管内部进行工作,该反应堆的喷嘴短截线工作系统包括:平台单元,设置在反应堆容器内部的上部, 大致圆筒形的侧壁部和阻挡侧壁部的下端的底部; 设置在所述平台单元的侧壁部分以允许所述平台单元的内部与所述喷嘴短柱连通的进入窗口; 访问窗口移动装置,其打开和关闭访问窗口; 工作装置,其从平台单元的内部前进到喷嘴短管的内部,以在喷嘴短管内进行工作; 以及控制装置,其设置在所述反应堆容器的外部并且控制所述进入窗移动装置和所述作业装置,其中,所述控制装置驱动所述访问窗移动装置打开所述访问窗口,驱动所述工作装置进行内部的工作 喷嘴短管,然后驱动访问窗口移动设备关闭工作后的访问窗口。
    • 10. 发明授权
    • Charged particle accelerator apparatus and electronic sterilizer
apparatus using the same
    • 带电粒子加速装置及使用其的电子杀菌装置
    • US5849252A
    • 1998-12-15
    • US611193
    • 1996-03-05
    • Ikuo WakamotoMasashi OoyaIchiro YamashitaSusumu UranoYuichiro KaminoNaoki Hisanaga
    • Ikuo WakamotoMasashi OoyaIchiro YamashitaSusumu UranoYuichiro KaminoNaoki Hisanaga
    • A61L2/08G21K5/04H05H7/22H05H9/00H01J31/00H01J23/12H01J25/00H01J29/00
    • G21K5/04A61L2/08H05H7/22H05H9/00
    • An electron beam emitted from an electron gun enters into an accelerator 8 through a magnetic lens and is accelerated by a large number of accelerating tube discs within the accelerator, resonance cavities formed thereby and a magnetic field supplied from the outside. Then, it is focused by a focusing magnet and enters into an energy analyzer and scanned by a beam scanner, and is irradiated as a beam onto a sterilization goods item. On the outside of the accelerator there is disposed a cooling jacket for making uniform the thermal expansions of the resonance cavities due to thermal load. Also, by providing frequency adjusting means for adjusting the frequency of an accelerating microwave input through an input coupler and also by the cooling jacket having its thickness gradually increased from the inlet toward the outlet so as to make the thermal expansions of the resonance cavities zero, it becomes possible to make the amount of variation in the acceleration phase zero to thereby enable provision of an accelerator apparatus with large output and high energy density. Furthermore, in the energy analyzer, a particle energy necessary for sterilization is selected by bending magnet energy means and slit and irradiated, with the result that an effective electronic sterilizer apparatus can be realized.
    • 从电子枪发射的电子束通过磁性透镜进入加速器8并被加速器内的大量加速管盘加速,由此形成的共振腔和从外部提供的磁场加速。 然后,它被聚焦磁体聚焦,并进入能量分析器并用光束扫描仪扫描,并作为光束照射到灭菌物品上。 在加速器的外侧设置有冷却套,用于使由于热负荷而使谐振腔的热膨胀均匀。 此外,通过提供频率调节装置,用于调节通过输入耦合器加速的微波输入的频率,并且还通过其冷却套的厚度从入口朝向出口逐渐增加,以使谐振腔的热膨胀为零, 可以使加速度相位的变化量为零,从而能够提供具有大输出和高能量密度的加速器装置。 此外,在能量分析装置中,通过弯曲磁体能量装置选择灭菌所需的粒子能量,进行狭缝照射,能够实现有效的电子杀菌装置。