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    • 2. 发明专利
    • Service installation in nuclear power plant
    • 核电厂的服务安装
    • JP2009014474A
    • 2009-01-22
    • JP2007175918
    • 2007-07-04
    • Toshiba CorpToshiba Plant Systems & Services Corp東芝プラントシステム株式会社株式会社東芝
    • TSUYUKI AKIRATAKAGI KAORUSATO KATSUHIRO
    • G21C19/18G21C19/20
    • PROBLEM TO BE SOLVED: To provide service facilities in a nuclear power plant which enables the two-dimensionally or three-dimensionally positional detection of a mobile device with high precision by using a contactless positional detection means.
      SOLUTION: The service installation in the nuclear power plant comprises a moving dolly 2 as a mobile device, a travelling cart 4 and a refueling machine 8. The mobile device is equipped with the contactless positional detection means, which is a laser positional detection means comprising a laser-type distance measuring device that oscillates and receives a laser beam, a reference plate for distance measurement to reflect the laser beam oscillated from the laser-type distance measuring device and a position computing means that conducts the two-dimensionally or three-dimensionally positional detection of the mobile device from positional signals received by the laser-type distance measuring device.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种能够通过使用非接触式位置检测装置,高精度地进行移动设备的二维或三维位置检测的核电站中的服务设施。 解决方案:核电站中的维修安装包括作为移动设备的移动台车2,行进车4和加油机8.移动设备配备有非接触位置检测装置,其是激光位置 检测装置,其包括振荡和接收激光束的激光式距离测量装置,用于距离测量的参考板,用于反射从激光型距离测量装置振荡的激光束;以及位置计算装置,其将二维或 根据由激光型距离测量装置接收的位置信号对移动装置进行三维位置检测。 版权所有(C)2009,JPO&INPIT
    • 3. 发明专利
    • Semiconductor device manufacturing method
    • 半导体器件制造方法
    • JP2009200426A
    • 2009-09-03
    • JP2008043257
    • 2008-02-25
    • Toshiba Corp株式会社東芝
    • SATO KATSUHIRONAKAJIMA TAKAHITO
    • H01L21/76H01L21/312H01L21/316
    • H01L21/76224
    • PROBLEM TO BE SOLVED: To provide a semiconductor device manufacturing method that controls a decrease in electric characteristics and reliability of a semiconductor device due to an impurity contained in an element separating insulation film. SOLUTION: A perhydrogenized silazane solution formed by diffusing a perhydrogenized silazane polymer into a carbon-containing solvent is applied to a silicon substrate 1 to form a coating film 6. A polysilazane film 7 is formed by heating the coating film 6 to volatilize the solvent, and the polysilazane film 7 is changed to a silicon dioxide film 8 by performing chemical treatment of the polysilazane film 7. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种半导体器件制造方法,其控制由于元件分离绝缘膜中所含的杂质导致的半导体器件的电特性和可靠性的降低。 解决方案:将通过将过氢化硅氮烷聚合物扩散到含碳溶剂中形成的过氢化硅氮烷溶液施加到硅衬底1上以形成涂膜6.聚硅氮烷膜7通过加热涂膜6而形成,以挥发 通过进行聚硅氮烷膜7的化学处理,将溶剂和聚硅氮烷膜7变成二氧化硅膜8.(C)2009,JPO&INPIT
    • 4. 发明专利
    • Insulating tape winding equipment, and insulating tape winding method using the insulating tape winding equipment
    • 绝缘胶带卷绕设备,以及使用绝缘胶带卷绕设备的绝缘卷绕方法
    • JP2006237523A
    • 2006-09-07
    • JP2005053886
    • 2005-02-28
    • Toshiba Corp株式会社東芝
    • TOBA KEINOSHITA YOSHITERUSATO KATSUHIRO
    • H01F41/12
    • PROBLEM TO BE SOLVED: To provide insulating tape winding equipment that can rectify a twist to a normal state even if the twist arises while the insulating tape is wound around the coil conductor, and an insulating tape winding method using the insulating tape winding equipment.
      SOLUTION: The insulating tape winding equipment can move in an x-axial direction, a y-axial direction, and a z-axial direction. It has a taping head 14 that can rotate around the y-axis and z-axis, a rotation ring 27 built into the taping head 14 so that it can rotate, reels 42a and 42b incorporated in this rotation ring 27 to take in the insulating tapes 13a and 13b, and a tape twist rectifying drive 53 that displaces the reels 42a and 42b when a twist arises in the insulating tapes 13a and 13b while they are wound around the coil conductor 10.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:即使在绝缘带缠绕在线圈导体上的情况下,即使发生扭曲,也可以提供将扭曲矫正到正常状态的绝缘带缠绕设备,以及使用绝缘带绕组的绝缘带缠绕方法 设备。

      解决方案:绝缘带卷绕设备可以在x轴方向,y轴方向和z轴方向上移动。 它具有能够围绕y轴和z轴旋转的带头14,一个嵌入到卷带头14中的旋转环27,以便它可以旋转,卷绕在这个旋转环27中的卷轴42a和42b以吸收绝缘 磁带13a和13b,以及当缠绕在线圈导体10上时在绝缘带13a和13b中发生扭曲时使卷轴42a和42b移位的带状扭曲矫正驱动器53.(C) JPO&NCIPI

    • 8. 发明专利
    • Turbine rotor blade polishing device for power plant
    • 用于发电厂的涡轮转子叶片抛光装置
    • JP2010007633A
    • 2010-01-14
    • JP2008170965
    • 2008-06-30
    • Toshiba Corp株式会社東芝
    • SATO KATSUHIRO
    • F01D25/00F01D5/02F01D5/14
    • PROBLEM TO BE SOLVED: To improve polishing efficiency of a turbine rotor blade and to polish accurately and evenly.
      SOLUTION: This device is provided with cradles 5a, 5b rotatably supporting a turbine rotor 3, a rotating device 8 driving and rotating the turbine rotor 3, a plurality of polishing heads 9 provided at a right and a left both sides of the rotor blade planted in the turbine rotor and projecting abrasive respectively, a head moving mechanism 10 supporting the polishing heads in such a manner that the same can move in an axial direction and a direction perpendicular to the axial direction and can swing and adjusting the polishing head to intended position and angle, and an abrasive collection and supply means collecting the abrasive 11 projected toward the rotor blade of the turbine rotor from each polishing head and supplying the same to the polishing head again. A back and an antinode sides of the rotor blade 3a planted in the turbine rotor 3 can be simultaneously and continuously polished by projecting abrasive 11 from each polishing head 9 at an appropriate position and angle while driving and rotating the turbine rotor 3 by the rotating device 8.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提高涡轮转子叶片的抛光效率并精确均匀地抛光。 解决方案:该装置设置有可旋转地支撑涡轮机转子3的托架5a,5b,驱动和旋转涡轮机转子3的旋转装置8,设置在涡轮转子3的右侧和左侧两侧的多个抛光头9 分别安装在涡轮转子和突出磨料中的转子叶片,头部移动机构10,其以这样的方式支撑抛光头,使得其可以在轴向方向和垂直于轴向的方向上移动,并且可以摆动和调节抛光头 到达预期的位置和角度,以及研磨收集和供应装置,从每个抛光头收集从涡轮转子的转子叶片突出的磨料11,并再次将其提供给抛光头。 通过在旋转装置驱动和旋转涡轮转子3的同时以适当的位置和角度将磨料11从每个抛光头9突出,可以同时并且连续地抛光植入在涡轮转子3中的转子叶片3a的背面和波腹面 8.版权所有(C)2010,JPO&INPIT