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    • 4. 发明授权
    • Structure of persistent current switch and that of control method
    • 持续电流开关的结构和控制方法的结构
    • US08035933B2
    • 2011-10-11
    • US12444176
    • 2007-10-10
    • Hee-Gyoun LeeGye-Won HongKyeong Dal ChoiSeung Wook Lee
    • Hee-Gyoun LeeGye-Won HongKyeong Dal ChoiSeung Wook Lee
    • H01L39/24
    • H01L39/20
    • Disclosed is the structure of a persistent current switch and a control method for the same. In the switch structure, a portion of a superconducting wire to be used as a switch is formed with slits such that the flow of current is controlled by the switch, to facilitate a transition between the superconducting state and the normal state of the superconducting wire. The structure of the persistent current switch includes a first slit longitudinally extending from a first point on one end of a superconducting wire to a second point and from a third point to a fourth point, the second, third, and fourth points being arranged sequentially in a longitudinal line, and second and third slits provided at opposite sides of a region between the second point and the third point where no first slit exists.
    • 公开了持续电流开关的结构及其控制方法。 在开关结构中,用作开关的超导线的一部分由狭缝形成,使得电流的流动由开关控制,以促进超导状态和超导线的正常状态之间的转变。 持续电流开关的结构包括从超导线的一端的第一点向第二点纵向延伸的第一狭缝,从第三点到第四点,第二,第三和第四点依次布置在 纵向线,以及第二和第三狭缝,设置在第二点和第三点之间的不存在第一狭缝的区域的相对侧。
    • 7. 发明申请
    • Superconductive Magnet for Persistent Current and Method for Manufacturing the Same
    • 用于持续电流的超导磁体及其制造方法
    • US20080207458A1
    • 2008-08-28
    • US11994173
    • 2006-05-26
    • Gye-Won HongHee-Gyoun Lee
    • Gye-Won HongHee-Gyoun Lee
    • H01F6/00H01L39/24H01F41/04
    • H01F6/06H01F6/00H01F41/048H01F41/061Y10S505/705Y10S505/706Y10T29/49014
    • Disclosed are a superconductive magnet manufactured by winding a thin superconductive rod wire in a coil without joint for maintaining a persistent current mode, and a method for manufacturing the same. The method includes winding both ends of a superconductive rod wire (10) on a first bobbin (21) and a second bobbin (22) respectively; forming a first unit rod wire (10a) and a second unit rod wire (10b) by slitting the superconductive rod wire (10) in the lengthwise direction; producing a pancake coil by winding the first and second unit rod wires (10a, 10b) on third bobbins (25) in one direction; and arranging the first and second unit rod wires (10a, 10b) such that magnetic fields (B, B′) in the same direction are generated from the pancake coil, by reversing one of the third bobbins (25) on which the first and second unit rod wires (10a, 10b) are wound.
    • 公开了一种超导磁体及其制造方法,该超导磁体是通过在不具有接头的线圈中缠绕薄的超导棒线来维持持续电流模式而制造的。 该方法包括分别在第一线轴(21)和第二线轴(22)上缠绕超导棒线(10)的两端; 通过在所述长度方向上切割所述超导棒线(10),形成第一单元棒线(10a)和第二单丝棒(10b); 通过将第一和第二单丝线(10a,10b)沿一个方向缠绕在第三线轴(25)上来产生扁平线圈; 并且通过使所述第三线轴(25)中的一个反转,从而从所述扁平线圈产生沿相同方向产生磁场(B,B')的所述第一和第二单位棒线(10a,10b) 缠绕第一和第二单位棒线(10a,10b)。
    • 8. 发明授权
    • Superconductive magnet for persistent current and method for manufacturing the same
    • 用于持续电流的超导磁体及其制造方法
    • US08178473B2
    • 2012-05-15
    • US11994173
    • 2006-05-26
    • Gye-Won HongHee-Gyoun Lee
    • Gye-Won HongHee-Gyoun Lee
    • H01L39/24
    • H01F6/06H01F6/00H01F41/048H01F41/061Y10S505/705Y10S505/706Y10T29/49014
    • Disclosed are a superconductive magnet manufactured by winding a thin superconductive rod wire in a coil without joint for maintaining a persistent current mode, and a method for manufacturing the same. The method includes winding both ends of a superconductive rod wire (10) on a first bobbin (21) and a second bobbin (22) respectively; forming a first unit rod wire (10a) and a second unit rod wire (10b) by slitting the superconductive rod wire (10) in the lengthwise direction; producing a pancake coil by winding the first and second unit rod wires (10a, 10b) on third bobbins (25) in one direction; and arranging the first and second unit rod wires (10a, 10b) such that magnetic fields (B, B′) in the same direction are generated from the pancake coil, by reversing one of the third bobbins (25) on which the first and second unit rod wires (10a, 10b) are wound.
    • 公开了一种超导磁体及其制造方法,该超导磁体是通过在不具有接头的线圈中缠绕薄的超导棒线来维持持续电流模式而制造的。 该方法包括分别在第一线轴(21)和第二线轴(22)上缠绕超导棒线(10)的两端; 通过在所述长度方向上切割所述超导棒丝(10),形成第一单丝棒(10a)和第二单丝杆(10b) 通过将第一和第二单丝线(10a,10b)沿一个方向缠绕在第三线轴(25)上来产生扁平线圈; 以及将所述第一和第二单丝线(10a,10b)布置成使得从所述扁平线圈产生相同方向的磁场(B,B'),通过使所述第三线轴(25)中的一个反转,所述第三线轴(25) 卷绕第二单位棒线(10a,10b)。
    • 9. 发明授权
    • Method for fabricating filament type high-temperature superconducting wire
    • 长丝型高温超导丝的制造方法
    • US08043429B2
    • 2011-10-25
    • US11692240
    • 2007-03-28
    • Hee Gyoun LeeGye Won HongKyeong Dal Choi
    • Hee Gyoun LeeGye Won HongKyeong Dal Choi
    • C30B21/04
    • H01L39/2461H01L39/248
    • The present invention relates to a method for fabricating a filament type high-temperature superconducting wire in which a thin film type high-temperature superconducting wire is fabricated into a filament shape suitable for use with alternating current. The method includes depositing a conducting ceramic or metal epitaxially on a metal substrate 10 having bi-axially textured property to deposit a conductive thin film layer 20 (S10); depositing silver, copper, nickel, silver and copper, or a nickel alloy epitaxially on the deposited conductive thin film layer 20 to deposit a metal layer 30 (S20); cutting the deposited metal layer 30 into a filament shape having a predetermined width using a laser, a slitter, or etching and separating the cut metal layer from the conductive film layer 20 by selective etching, stress generation, or a difference in thermal expansion coefficients to form a metal filament 40 (S30); coating a single layer or multi-layers of a ceramic buffer layer 41 on the outside of the separated metal filament 40 (S40); coating a superconducting layer 42 on the outside of the ceramic buffer layer 41 (S50); and coating a single layer or multi-layers of a metal protective layer 43 on the outside of the superconducting layer 42 (S60).
    • 本发明涉及一种制造长丝型高温超导线材的方法,其中薄膜型高温超导线材制成适合于交流电流使用的长丝形状。 该方法包括在具有双轴纹理特性的金属衬底10上外延沉积导电陶瓷或金属以沉积导电薄膜层20(S10)。 在沉积的导电薄膜层20上外延地沉积银,铜,镍,银和铜或镍合金以沉积金属层30(S20); 使用激光,分切机或蚀刻将沉积的金属层30切割成具有预定宽度的长丝形状,并通过选择性蚀刻,应力产生或热膨胀系数的差异将切割的金属层与导电膜层20分离, 形成金属丝40(S30); 在分离的金属细丝40的外侧涂覆单层或多层陶瓷缓冲层41(S40); 在陶瓷缓冲层41的外侧涂覆超导层42(S50); 并在超导层42的外侧涂覆单层或多层金属保护层43(S60)。