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The reduction of the critical current in Nb3Sn cables under transverse loads

机译:在横向载荷下Nb3sn电缆中临界电流的减小

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摘要

The degradation of the critical current of impregnated Rutherford type Nb3Sn cables was investigated as a function of the applied transverse load and magnetic field. The cable is made of modified jelly-roll-type strand material and has a keystone angle of 1.0°. The voltage-current characteristics were determined for the magnetic field ranging from 2 to 11 T and transverse pressure up to 250 MPa on the cable surface. It was found that the 48-strand cable, made of strands with six elements in the matrix, showed a larger critical current degradation than the 26-strand cable with 36 elements per strand. The global degradation of the 48-strand cable was 63% at 150 MPa, and 40% at 150 MPa for the 26-strand cable. Microanalysis of the cross-section before and after compression is presented, showing significant permanent damage to the superconducting strands.
机译:研究了浸渍的Rutherford型Nb3Sn电缆的临界电流的衰减与所施加的横向载荷和磁场的关系。该电缆由改良的果冻卷型绞合线材料制成,其梯形角为1.0°。确定了2至11 T范围内的磁场和电缆表面上最高250 MPa的横向压力的电压-电流特性。已经发现,由在基质中具有六种元素的线束制成的48股电缆比在每条线束中具有36个元素的26股电缆显示更大的临界电流衰减。对于48股电缆,其整体劣化在150 MPa时为63%,对于26股电缆在150 MPa时为40%。呈现了压缩前后横截面的微观分析,显示出对超导股线的重大永久性损坏。

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