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Electrical Resistance of Nb3Sn/Cu Splices Produced by Electromagnetic Pulse Technology and Soft Soldering

机译:电磁脉冲技术和软焊产生的Nb3Sn / Cu接头的电阻

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摘要

The electrical interconnection of Nb3Sn/Cu strands is a key issue for the construction of Nb3Sn based damping ring wigglers and insertion devices for third generation light sources. We compare the electrical resistance of Nb3Sn/Cu splices manufactured by solid state welding using Electromagnetic Pulse Technology (EMPT) with that of splices produced by soft soldering with two different solders. The resistance of splices produced by soft soldering depends strongly on the resistivity of the solder alloy at the operating temperature. By solid state welding splice resistances below 10 nOhm can be achieved with 1 cm strand overlap length only, which is about 4 times lower than the resistance of Sn96Ag4 soldered splices with the same overlap length. The comparison of experimental results with Finite Element simulations shows that the electrical resistance of EMPT welded splices is determined by the resistance of the stabilizing copper between the superconducting filaments and confirms that welding of the strand matrix is indeed achieved. EMPT allows interconnecting the ductile, unreacted strands, which reduces the risk of damaging the brittle reacted Nb3Sn strands.
机译:Nb3Sn / Cu股线的电气互连是用于第三代光源的基于Nb3Sn的阻尼环摆动器和插入装置构造的关键问题。我们比较了通过使用电磁脉冲技术(EMPT)进行固态焊接而制造的Nb3Sn / Cu接头的电阻与通过使用两种不同焊料进行软焊接而产生的接头的电阻。通过软焊接产生的接头的电阻在很大程度上取决于焊接合金在工作温度下的电阻率。通过固态焊接,仅用1 cm的股线搭接长度即可达到10 nOhm以下的电阻,这比具有相同搭接长度的Sn96Ag4焊接接头的电阻低约4倍。实验结果与有限元模拟的比较表明,EMPT焊接接头的电阻由超导细丝之间的稳定铜的电阻决定,并证实确实实现了线束基体的焊接。 EMPT允许互连延性的,未反应的线束,从而降低了损坏易碎的Nb3Sn反应线束的风险。

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