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    • 3. 发明授权
    • Aluminum enamel board
    • 铝搪瓷板
    • US4842959A
    • 1989-06-27
    • US107944
    • 1987-10-13
    • Ryu MaedaShingoro FukuokaHiroshi Yatabe
    • Ryu MaedaShingoro FukuokaHiroshi Yatabe
    • H05K1/05
    • H05K1/053Y10S428/901Y10T428/12597Y10T428/12736Y10T428/12757
    • This invention provides an aluminum enamel board having an electrically insulating glass layer formed on an Al-Si alloy plate containing at least 5 wt % of Si or a composite metal plate having an aluminum or alloy layer formed on at least one side of a metal plate made of a metal other than aluminum. Since the Al-Si alloy plate containing at least 5 wt % of Si or a composite metal plate having the aluminum or aluminum alloy layer is used as a board, the adhesion strength between the metal plate and the electrically insulating glass layer can be increased. At the same time, a predetermined material is used to form the electrically insulating glass layer, thereby minimizing a difference in thermal conductivity and thermal expansion coefficient between the electrically insulating glass layer and the metal plate. This improves the heat conduction characteristics of the board and prevents warping of the board.
    • 本发明提供一种铝搪瓷板,其具有在包含至少5重量%的Si的Al-Si合金板上形成的电绝缘玻璃层或具有在金属板的至少一侧上形成的铝或合金层的复合金属板 由铝以外的金属制成。 由于使用含有至少5重量%的Si的Al-Si合金板或具有铝或铝合金层的复合金属板作为基板,所以可以提高金属板和电绝缘玻璃层之间的粘附强度。 同时,使用预定的材料形成电绝缘玻璃层,从而最小化电绝缘玻璃层和金属板之间的导热性和热膨胀系数的差异。 这样可以改善电路板的导热特性,防止电路板翘曲。
    • 4. 发明申请
    • Fluid Level Measurement Instrument by Using Solenoid Coil
    • 使用电磁线圈的液位测量仪
    • US20120255353A1
    • 2012-10-11
    • US13438369
    • 2012-04-03
    • Tatsuro KozakiHiroshi YatabeIsao HaraToshiro Akahira
    • Tatsuro KozakiHiroshi YatabeIsao HaraToshiro Akahira
    • G01F23/30
    • G01F23/72G01F23/0038G01F25/0061
    • To achieve a fluid level measurement instrument requiring no detecting pipe that can accurately measure over a long period of time a fluid level in a tank for storing therein fluid without having to use a detecting pipe for sampling the fluid from the tank. A balance tube 41 has no detecting pipes and a solenoid coil 45 is wound around an outside of the balance tube 41. A float 46 containing therein a magnetic material 47 is disposed inside the solenoid coil 45. A cover 59 formed, for example, of metal covers an outer surface of the float 46 to prevent entry of fluid and hydrogen from outside. The float 46 moves according to a fluid level in the balance tube 41, which results also in inductance of the solenoid coil 45 being changed. Measuring the inductance of the solenoid coil 45 allows the fluid level of the balance tube 41 to be measured without having to use the detecting pipe.
    • 为了实现不需要检测管的液位测量仪器,可以在长时间内精确地测量用于储存流体的罐中的液位,而不必使用用于从罐中取样流体的检测管。 平衡管41没有检测管,螺线管线圈45缠绕在平衡管41的外侧。在螺线管线圈45的内侧设置有包含磁性材料47的浮子46.例如, 金属覆盖浮子46的外表面以防止流体和氢气从外部进入。 浮子46根据平衡管41中的液位移动,这也导致螺线管线圈45的电感改变。 测量螺线管线圈45的电感允许平衡管41的液位测量而不必使用检测管。
    • 6. 发明授权
    • System for monitoring operating condition of a control rod drive
mechanism
    • 用于监控控制驱动机构的操作条件的系统
    • US5076996A
    • 1991-12-31
    • US360030
    • 1989-06-01
    • Jinichi MiyaguchiYoshinori TakadaShinichi MurakawaHiroshi Yatabe
    • Jinichi MiyaguchiYoshinori TakadaShinichi MurakawaHiroshi Yatabe
    • G21C17/12
    • G21C17/12
    • A system for monitoring an operating condition of a control rod drive mechanism (CRDM) having a pressure housing erectly mounted on a reactor vessel head closure, a vertically movable control rod drive shaft accommodated in the housing and an electromagnetically motive latch mechanism includes an accelerometer fitted to a housing upper end and signal recording means for receiving output signals from the accelerometer through signal processing means and recording the processed output signals. A system for monitoring and analyzing an operating condition of an electromagnetically driven CRDM having a lifting electromagnetic coil, a stationary gripper electromagnetic coil and a movable gripper electromagnetic coil includes a detector, fitted to the CRDM, for detecting vibrations caused by operation of the drive mechanism, a buffer amplifier for receiving current, and detection and control signals, a pre-processing unit for digitalizing these signals, and a processing unit for analytically processing both the current and detection signals.
    • 一种用于监测控制棒驱动机构(CRDM)的操作状态的系统,其具有竖立地安装在反应堆容器头部封闭件上的压力壳体,容纳在壳体中的可垂直移动的控制杆驱动轴和电磁动力闩锁机构,包括加速度计 以及信号记录装置,用于通过信号处理装置接收来自加速度计的输出信号并记录经处理的输出信号。 一种用于监测和分析具有提升电磁线圈,静止夹持器电磁线圈和可动夹持器电磁线圈的电磁驱动CRDM的操作条件的系统包括安装在CRDM上的用于检测由驱动机构的操作引起的振动的检测器 用于接收电流的缓冲放大器和检测和控制信号,用于对这些信号进行数字化的预处理单元,以及用于分析处理电流和检测信号的处理单元。