发明名称 Superconducting Magnet Device or Magnetic Resonance Imaging Apparatus
摘要 The present invention addresses a challenge of providing a superconducting magnet device that enables it to realize an operation of opening and closing a permanent current switch of the superconducting magnet device at high speed with small electric heater capacity, avoiding an increase in the amount of heat incursion into the superconducting coil by not providing a driving mechanism from outside while enabling it to reduce refrigerant consumption or electric power consumed by a refrigerator, or an MRI apparatus using it having means for obtaining good image quality. The superconducting magnet device including a superconducting coil and a permanent current switch to enable it to realize permanent current flowing with the permanent current switch operated by an electric heater or an MRI apparatus using it has a heat transfer member to cool the permanent current switch from a cooling stage with solid conductivity and a thermal switch, and the thermal switch generates a gap in a heat transfer path including the heat transfer member for cooling and a refrigerator by thermal expansion when an electric heater is electrified.
申请公布号 US2017052237(A1) 申请公布日期 2017.02.23
申请号 US201615230874 申请日期 2016.08.08
申请人 Hitachi, Ltd. 发明人 IMAMURA Yukinobu
分类号 G01R33/38;G01R33/3815;G01R33/385;H01F6/04 主分类号 G01R33/38
代理机构 代理人
主权项 1. A superconducting magnet device comprising: a superconducting coil; a permanent current switch forming a closed circuit along with the superconducting coil; a first electric heater which is laid on the permanent current switch; a support member which is fixed to the permanent current switch; a second electric heater which is laid on the support member; a first cooling member which is cooled by a refrigerant or a refrigerator; and a first columnar member which is placed between the permanent current switch and the first cooling member and fixed to one of the permanent current switch and the first cooling member, wherein the support member has a coefficient of thermal expansion that is higher than the coefficient of thermal expansion of the first columnar member.
地址 Tokyo JP