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    • 8. 发明授权
    • Superconducting coil refrigerating method and superconducting apparatus
    • 超导线圈制冷方法及超导装置
    • US4872314A
    • 1989-10-10
    • US280966
    • 1988-12-07
    • Katuhiko AsanoTakao Suzuki
    • Katuhiko AsanoTakao Suzuki
    • H01F6/04F17C13/02F25D3/10H01L39/04
    • F17C13/02F17C2205/0323F17C2221/017F17C2223/0161F17C2270/0509Y10S505/885Y10S505/899
    • In a superconducting coil refrigerating method and a superconducting apparatus, a flow of liquid helium is induced in a helium vessel only at a specified time upon change of a current of the superconducting coil, before the current change and/or after the current change. The induction of the helium flow before the current change provides a condition that the transfer of helium gas bubbles which may be generated upon subsequent current change is rapidly effected. The induction of the helium flow upon the current change or after the current change results in the rapid exhaustion of helium gas bubbles which continue to generate or have been generated. With such a construction, even if a superconducting pulse magnet is used, any influence of helium gas bubbles produced due to an AC loss upon change of a current can be eliminated, thereby providing a coil which is stable to a pulse-excited magnetization thereof.
    • 在超导线圈制冷方法和超导装置中,只有在电流变化之前和/或电流变化之后,在超导线圈的电流改变之后的规定时间内,氦气容器才会产生液氦气流。 在电流变化之前对氦气流的诱导提供了一种条件,即在随后的电流变化时可能产生的氦气泡的转移迅速发生。 在电流变化或电流变化之后,氦气流的诱导导致持续产生或已经产生的氦气泡迅速耗尽。 通过这样的结构,即使使用超导脉冲磁铁,也可以消除由于电流变化时的交流损失而产生的氦气泡的影响,由此提供对其脉冲激励磁化稳定的线圈。
    • 10. 发明授权
    • Superconducting apparatus
    • 超导装置
    • US4726199A
    • 1988-02-23
    • US767964
    • 1985-08-21
    • Ichiro TakanoHirotsugu OhgumaHideki NakagomeYoshio Gomei
    • Ichiro TakanoHirotsugu OhgumaHideki NakagomeYoshio Gomei
    • F25B23/00H01F6/04H01L39/04F25B31/00
    • F25B23/006H01F6/04Y10S505/885
    • Disclosed is a superconducting apparatus comprising a superconducting coil and a cooling apparatus for cooling this superconducting coil. The cooling apparatus is constituted by a cooling medium circulating path for subjecting a cooling medium to a vaporization/liquefication cycle, and a temperature equalizing plate for effecting a uniform cooling of the superconducting coil by the cooling medium. The cooling medium circulating path is constituted by a pair of flowing-down parts through which a liquid cooling medium flows downwards by gravity, and a pair of vaporization parts through which the liquid cooling medium flows upwards while it is being vaporized. The temperature-equalizing plate covers the peripheral surface making one entire round of the superconducting coil around the axis of the coil. It is divided into at least two parts at its lower end, which are electrically insulated from each other.
    • 公开了一种包括超导线圈和用于冷却该超导线圈的冷却装置的超导装置。 冷却装置由用于使冷却介质进行蒸发/液化循环的冷却介质循环路径和用于通过冷却介质均匀冷却超导线圈的温度均衡板构成。 冷却介质循环路径由液体冷却介质通过重力向下流动的一对向下流动部分和液体冷却介质在其被汽化时向上流动的一对汽化部分构成。 温度均衡板覆盖围绕线圈的轴线的整个超导线圈的整个圆周。 它在其下端被分成至少两个部分,它们彼此电绝缘。