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    • 1. 发明申请
    • Intelligent Current Lead Device and Operational Methods Thereof
    • 智能电流引线器件及其操作方法
    • US20170025850A1
    • 2017-01-26
    • US15082215
    • 2016-03-28
    • Christopher Mark ReyThomas James Tracy, JR.Benjamin Scott Andrews
    • Christopher Mark ReyThomas James Tracy, JR.Benjamin Scott Andrews
    • H02J1/14H05K7/20H02J3/14
    • H02J1/14H02J3/14Y02E40/60
    • An intelligent current lead device, its design, fabrication, and methods of operation are described in this disclosure. The intelligent current lead device described in this disclosure electrically and thermally connects and disconnects one or more power sources or loads operating at one temperature reservoir with one or more machines or devices operating at either the same or a different temperature reservoir. The intelligent current lead can operate in either an active mode or passive mode. The intelligent current lead device may incorporate the use of multiple types of diagnostic sensors and instrumentation, which can be monitored, interpreted, and analyzed. The program logic of the intelligent current lead may be used to interpret the data obtained from the diagnostic sensors and instrumentation in order to adjust/actuate/switch the current lead so as to optimize its configuration to respond to requirements of an electrical load that changes with time. There are many applications that the intelligent current lead can be used in conjunction with including but not limited to: superconducting magnets, transformers, power cables, energy storage, motors, generators, fault current limiters, circuit breakers, fusion magnets, accelerator magnets, MRI magnets, NMR magnets, induction heaters, magnetic separators, among other applications.
    • 在本公开中描述了智能电流引线装置,其设计,制造和操作方法。 在本公开中描述的智能电流引线装置电气和热连接和断开在一个温度储存器上操作的一个或多个电源或负载,其中一个或多个机器或装置在相同或不同的温度储存器中操作。 智能电流引线可以在主动模式或被动模式下工作。 智能电流引线装置可以结合使用多种类型的诊断传感器和仪器,其可被监测,解释和分析。 智能电流引线的程序逻辑可用于解释从诊断传感器和仪器获取的数据,以便调整/启动/切换电流引线,以便优化其配置以响应随着电气负载变化的要求 时间。 有许多应用,智能电流引线可以结合使用,包括但不限于:超导磁体,变压器,电力电缆,能量存储,电机,发电机,故障限流器,断路器,融合磁体,加速器磁体,MRI 磁铁,磁铁,感应加热器,磁选机等。
    • 10. 发明授权
    • Method of forming superconducting magnets using stacked LTS/HTS coated conductor
    • 使用堆叠的LTS / HTS涂层导体形成超导磁体的方法
    • US06925316B2
    • 2005-08-02
    • US10379500
    • 2003-03-05
    • Christopher Mark Rey
    • Christopher Mark Rey
    • H01B1/08H01F6/06H01F41/04H01B12/00H01F6/00H01L39/00
    • H01B1/08H01F6/06H01F41/048Y10S505/705
    • A method of forming magnets using stacked superconducting films-disks of coated conductor is described. The superconducting material may be either from the oxide high temperature superconducting (HTS) class or the metallic/inter-metallic low temperature superconducting (LTS) class. An LTS metallic or inter-metallic compound can include Nb, Va, Ti, Hg, Pb, NbTi, Nb3Sn, Nb3Al, etc. or the more recently discover MgB2. An oxide superconductor refers to the RE-Ba2Cu3Ox compound, wherein RE=Y, Nd, La, Sm, Eu, Gd, Dy, Ho, Er, Tm, Yb, Lu; the Bi2Sr2CaCu2Ox, the (Bi, Pb)2Sr2CaCu2Ox, Bi2Sr2Ca2Cu3Ox or (Bi, Pb)2Sr2Ca2Cu3Ox compound; the Tl2Ca1.5BaCu2Ox or Tl2Ca2Ba2Cu3Ox compound; or a compound involving substitution such as the Nd1+xBa2−xCu3Ox compounds.
    • 描述了使用层叠超导膜形成磁体的方法 - 涂覆导体的盘。 超导材料可以来自氧化物高温超导(HTS)类或金属/金属间低温超导(LTS)级。 LTS金属或金属间化合物可以包括Nb,Va,Ti,Hg,Pb,NbTi,Nb 3 Sn,Nb 3 Al等,或者更近些 发现MgB <2> 。 氧化物超导体是指RE-Ba 2 Cu 3 O x O x化合物,其中RE = Y,Nd,La,Sm,Eu, Gd,Dy,Ho,Er,Tm,Yb,Lu; (Bi,Pb)2 N 2 O 2,(Bi,Pb)2 N 2 O 2, 2 Sr 2 Sr 2 Ca 2 O 2 x 2,Bi 2 Sr 2 Ca, 或者(Bi,Pb)2 Sr 2 O 2,Ca 2 O 3, 3种以上的3种以上的化合物; T 1 2 C 1 Ca 2 O 2 O 2或Ti 2 O 2 C 1 H 2 > 2 2 3 3 3 或涉及取代的化合物,例如Nd 1 + x 2 O 2-x N 3 O x O x x化合物。