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    • 3. 发明专利
    • Magnetic refrigeration device
    • 磁性制冷装置
    • JP2013257104A
    • 2013-12-26
    • JP2012134387
    • 2012-06-14
    • Railway Technical Research Institute公益財団法人鉄道総合技術研究所
    • WAKI KOICHIROMIYAZAKI YOSHIKIARAI YUKIMIZUNO KATSUTOSHIYOSHIZAWA KEISUKENAGASHIMA MASARU
    • F25B21/00
    • Y02B30/66
    • PROBLEM TO BE SOLVED: To provide a magnetic refrigeration device with high efficiency by arranging a rod-shape or plate-shape magnetic operation substance housed in a duct of the magnetic refrigeration device such that a demagnetization field and an eddy current are suppressed.SOLUTION: In a magnetic refrigeration device having a duct assembly (21) constituted by assembling ducts (1) in which magnetic operation substances are housed and arranged in a fixed state, a magnetic circuit pair (30) arranged so as to sandwich the duct assembly (21), generating a magnetic field space, and rotatably arranged, and rotary valves (51 to 54) connected to the ducts (1), and carrying out magnetic refrigeration base on a magneto-caloric effect by an action of a magnetic field in the magnetic field to the duct assembly (21) accompanied by an action of the rotary valves (51 to 54), a demagnetization and an eddy currents are suppressed by housing rod-shape magnetic operation substances (101) in the ducts (1) and arranging a longitudinal direction of the rod-shape magnetic operation substances (101) so as to match the same to a direction of the magnetic field (102).
    • 要解决的问题:通过设置容纳在磁性制冷装置的管道中的棒状或板状磁性操作物质,从而抑制退磁场和涡流,从而提供高效率的磁性制冷装置。解决方案: 在具有管状组件(21)的磁性制冷装置中,所述导管组件(21)通过组装固定状态的磁性操作物质的管道(1)构成,所述磁路对(30)被布置成夹持所述管道组件 ),产生磁场空间和可旋转地布置的旋转阀(51至54),并连接到管道(1)上,并通过磁场的作用在磁热效应上进行磁致冷基 伴随着旋转阀(51至54)的作用的管道组件(21)的场,通过在管道中容纳棒状磁性操作物质(101)来抑制退磁和涡流 (1),并且使棒状磁性操作物质(101)的长度方向与磁场(102)的方向一致。
    • 9. 发明专利
    • Permanent current switch for high-temperature superconducting magnet
    • 用于高温超导磁体的永久电流开关
    • JP2012238717A
    • 2012-12-06
    • JP2011106586
    • 2011-05-11
    • Railway Technical Research Institute公益財団法人鉄道総合技術研究所
    • MIZUNO KATSUTOSHIOGATA MASABUMIHASEGAWA HITOSHIKASHIWAGI TAKAYUKISAKAMOTO YASUAKI
    • H01L39/20H01F6/00
    • PROBLEM TO BE SOLVED: To provide a permanent current switch for a high-temperature superconducting magnet in which a permanent current mode is achieved.SOLUTION: In a permanent current switch for a high-temperature superconducting magnet which is connected to the high-temperature superconducting magnet 2 connected to an exciting DC power source 1 in parallel, a normal conductive magnet 5 is disposed in the vicinity of a high-temperature superconducting wire 3 constituting the permanent current switch 4, an AC supply source 5C is connected to this normal conductive magnet 5, and an AC current is made to flow, so that, by addition of the external magnetic field, the normal conducting transition of the high-temperature superconducting magnet 2 is generated even by small thermal load which does not reach the critical temperature even if both heat generation and magnetic field due to an eddy current are generated in the high-temperature superconducting wire 3.
    • 要解决的问题:提供一种用于实现永久电流模式的高温超导磁体的永久电流开关。 解决方案:在与连接到励磁直流电源1并联的高温超导磁体2连接的高温超导磁体的永久电流开关中,普通导电磁体5设置在 构成永久电流开关4的高温超导线3,与该正常导电磁铁5连接的交流电源5C,使交流电流流动,通过外加磁场的正常 即使在高温超导线3中产生由于涡流引起的发热和磁场两者都不会达到临界温度的小热负荷,也产生高温超导磁体2的导通转变。

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