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Effects of impregnating material failure on stability of superconducting magnet analyzed by wire dynamics simulation

机译:导线动力学模拟分析含浸材料失效对超导磁体稳定性的影响

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The wire dynamics simulation has been performed to evaluate the stability of the impregnated superconducting magnet. The relationship between quench current and the impregnating material failure in the superconducting magnet was studied. In the impregnated superconducting magnet it is considered that the heating is induced by the cracking of the impregnating material or by the friction between wire and wire or wire and bobbin after the cracking. The wire dynamics simulation developed in this study can clarify the behavior of a superconducting coil by solving the equation of motion for each wire with time. In this simulation impregnating material was simulated as springs which connect between wires. The stresses to the springs were calculated, and were used to decide the failure of the impregnating material. It was found that just after the impregnating material cracking the heating increased suddenly at the place where the cracking of the impregnating material was induced and results in quench. The sudden increase of heating was caused by friction between wire and bobbin. This result suggests that the impregnating material failure is closely related to the stability of superconducting magnet.
机译:进行了导线动力学仿真,以评估浸渍的超导磁体的稳定性。研究了超导磁体的失超电流与浸渍材料失效之间的关系。在浸渍的超导磁体中,认为是由于浸渍材料的破裂或破裂后的线与线之间或线与线轴之间的摩擦引起的热量。在这项研究中开发的导线动力学仿真可以通过求解每条导线随时间的运动方程来阐明超导线圈的行为。在该模拟中,将浸渍材料模拟为连接线之间的弹簧。计算了弹簧的应力,并将其用于确定浸渍材料的破坏。已经发现,在浸渍材料开裂之后,在引起浸渍材料开裂的地方,加热突然增加并导致淬火。发热的突然增加是由于线和线轴之间的摩擦引起的。该结果表明,浸渍材料的破坏与超导磁体的稳定性密切相关。

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