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    • 1. 发明授权
    • Superconductor wire and process for production thereof
    • 超导线及其制造方法
    • US5204315A
    • 1993-04-20
    • US837918
    • 1992-02-20
    • Yoshitaka ItoMasami IshiiTetsuo OkaTakeo NakagawaLihong Zhang
    • Yoshitaka ItoMasami IshiiTetsuo OkaTakeo NakagawaLihong Zhang
    • B21C23/26H01B12/04H01B12/10H01B13/00H01L39/24
    • H01L39/248Y10S505/704Y10S505/74
    • A process for production of superconductor wire having multiple rings, comprising the steps of: preparing a silver mixture comprising a silver or silver-gold alloy mixed with a bonding agent, and a superconductor mixture comprising a superconductor powder with bonding agent; arranging both the silver mixture and the superconductor mixture in a extrusion die; extruding a wire having at least one ring of the superconductor mixture and one ring of the silver mixture in the radial direction; and heating the wire at the sinter temperature of the oxide superconductor so that the bonding agent is removed and the oxide superconductor powder and the silver powder are sintered. A superconductor wire comprising an inner core and an outer ring covering the core, wherein one of the ring on the core comprises a sintered silver powder and the other of the ring on the core comprises a sintered oxide superconductor powder.
    • 一种制造具有多个环的超导线的方法,包括以下步骤:制备包含与粘合剂混合的银或银 - 金合金的银混合物,以及包含超导体粉末与粘合剂的超导体混合物; 将银混合物和超导体混合物布置在挤出模具中; 在径向上挤出具有超导体混合物的至少一个环和银混合物的一个环的导线; 并在氧化物超导体的烧结温度下加热导线,从而去除粘合剂,并烧结氧化物超导体粉末和银粉。 一种超导线,其包括内芯和覆盖芯的外环,其中芯上的环中的一个包括烧结银粉,芯上的另一个环包括烧结氧化物超导体粉末。
    • 3. 发明授权
    • Nuclear magnetic resonance apparatus
    • 核磁共振装置
    • US06489769B2
    • 2002-12-03
    • US09888526
    • 2001-06-26
    • Takashi NakamuraJun UzawaTetsuo OkaYoshitaka ItoYousuke YanagiMasaaki YoshikawaRyohei YabunoUichiro Mizutani
    • Takashi NakamuraJun UzawaTetsuo OkaYoshitaka ItoYousuke YanagiMasaaki YoshikawaRyohei YabunoUichiro Mizutani
    • G01V300
    • G01R33/3815
    • A nuclear magnetic resonance apparatus including: a cup-shaped high-temperature superconductor 20 having a hollow cylindrical shape or portion cooled to not more than a superconducting transition temperature in a vacuum insulating container 22; and a detection coil 12 for detecting an NMR signal of a material 11 to be measured inserted into the hollow cylindrical portion 20a of the high-temperature superconductor. The high-temperature superconductor is magnetized in an axial direction, a static magnetic field is thereby generated in the hollow cylindrical portion in a cylinder axial direction, and the NMR signal of a material is detected by the detection coil and the existing spectrometer. A strong static magnetic field comparable to a conventional superconducting magnet is formed without using a refrigerant (liquid helium) essential for operating the conventional superconducting magnet, and a strength distribution of the static magnetic field is homogeneous.
    • 一种核磁共振装置,包括:在真空绝热容器22中具有中空圆筒形状或冷却至不超过超导转变温度的部分的杯状高温超导体20; 以及检测线圈12,用于检测被插入到高温超导体的中空圆筒部20a中的待测材料11的NMR信号。 高温超导体在轴向上被磁化,因此在中空圆柱形部分中在气缸轴向方向上产生静态磁场,并且通过检测线圈和现有的光谱仪检测材料的NMR信号。 形成与传统超导磁体相当的强静态磁场,而不使用用于操作常规超导磁体所必需的制冷剂(液氦),并且静磁场的强度分布是均匀的。
    • 4. 发明授权
    • Magnetic device
    • 磁性装置
    • US06847278B2
    • 2005-01-25
    • US10097005
    • 2002-03-14
    • Yoshitaka ItoMasaaki YoshikawaYousuke YanagiTetsuo Oka
    • Yoshitaka ItoMasaaki YoshikawaYousuke YanagiTetsuo Oka
    • F25B9/00H01F6/00H01F6/04H01F5/00
    • H01F6/00
    • A magnetic device which is highly durable, reliable, and safe without being damaged when a magnetic filed is applied. The magnetic device includes a cooling device having a cold head refrigerated by an effect of a cryogenic refrigerator, a magnetic field generation device configured to apply a non-stationary magnetic field on a magnetic body, and a cold head extension portion configured to thermally connect the magnetic body and the cold head. The cold head extension portion includes at least two members, one a low resistance member and the other a high resistance member having different resistivities. With this device, the eddy current generated in the cold head extension portion and the electromagnetic force produced in the cold head by the cold head extension portion are reduced.
    • 一种磁性装置,其耐久性,可靠性和安全性,而不会在施加磁场时被损坏。 该磁性装置包括一冷却装置,该冷却装置具有通过低温冰箱的作用而冷藏的冷头,被配置为将磁场上施加非固定磁场的磁场产生装置和冷头扩展部, 磁体和冷头。 冷头延伸部分包括至少两个构件,一个是低阻力构件,另一个是具有不同电阻率的高阻力构件。 利用该装置,冷头延伸部产生的涡电流和由冷头延伸部在冷头中产生的电磁力减小。
    • 6. 发明授权
    • Superconductive magnetic levitation apparatus
    • 超导磁悬浮装置
    • US5521570A
    • 1996-05-28
    • US458820
    • 1995-06-02
    • Yoshitaka ItoYousuke YanagiTetsuo Oka
    • Yoshitaka ItoYousuke YanagiTetsuo Oka
    • B60L13/04B65G54/02G09B23/18G09B23/20H02N15/00H01F1/00B60L13/00B65G15/58H02K7/09
    • B65G54/02
    • A superconductive magnetic levitation apparatus is provided which is simple in structure, low in cost and is used for readily explaining superconducting phenomena such as the Meissner effect and the pinning effect. The superconductive magnetic levitation apparatus includes a levitation moving unit 5 including superconductors 4, and a heat insulative tank 51 for storing a coolant 52 for cooling the superconductors 4; and a track 3 arranged in confronted relation with the superconductors 4 of the levitation moving unit 5, the track 3 including a number of permanent magnets 2 fixed to a ferromagnetic metal plate 1. The permanent magnets 2 are composed of a plurality of series connected magnetic pieces having the same pole in a longitudinal direction of the track 3 and a plurality of parallel connected magnetic pieces having different poles in a transverse direction of the track 3.
    • 提供了一种结构简单,成本低廉的超导磁悬浮装置,用于容易地解释诸如迈斯纳效应和钉扎效应的超导现象。 超导磁悬浮装置包括:包括超导体4的悬浮移动单元5和用于冷却超导体4的冷却剂52的隔热箱51; 以及与悬浮移动单元5的超导体4相对配置的轨道3,轨道3包括固定到强磁性金属板1上的多个永磁体2.永磁体2由多个串联连接的磁体 在轨道3的纵向上具有相同极点的块和在轨道3的横向方向上具有不同极点的多个平行连接的磁片。