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Magnetic field orientation dependence of critical current in industrial Nb3Sn strands

机译:Nb3Sn工业绞线中临界电流的磁场取向依赖性

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In usual superconducting devices such as magnets for NMR, the magnetic field is perpendicular to the superconducting strand axis. But in some special devices, such as magnets for the toroidal field system of fusion machines, the strands can experience any field orientation. For NbTi strands, the pinning force is dependent on the field orientation because of the drawing process (Takacs, S., Polak, M. and Krempasky, L., Critical currents of NbTi tapes with differently oriented anisotropic defects, Cryogenics, 1983, 23, 153-159). In the case of Nb,Sn strands, the draw and react process suggests that the pinning force is isotropic. In fact, preliminary experiments have shown the contrary, which is why the magnetic field orientation dependence of the critical current for two types of industrial Nb3Sn strands has been measured. These measurements have been performed for seven field orientations at field strengths up to 20 T. A clear anisotropic effect has been observed, which cannot be explained by Kramer's pinning law. The results are in very good agreement with an empirical law proposed in a recent study by Takayasu et al. (Takayasu, M., Montgomery, D.B. and Minervini, J.V., Effect of magnetic field direction on the critical current of twisted multifilamentary superconducting wires, Inst. of Phys. Conf. Ser., 1997, 158, 917-920). The parameters to be used in this law could be specific to the manufacturing process. (C) 1999 Elsevier Science Ltd. All rights reserved. [References: 7]
机译:在常规的超导装置中,例如用于NMR的磁体,磁场垂直于超导链轴。但是在某些特殊的设备中,例如用于融合机环形磁场系统的磁体,钢绞线可以经受任何磁场定向。对于NbTi绞线,钉扎力取决于拉拔过程的磁场取向(Takacs,S.,Polak,M.和Krempasky,L.,具有不同取向的各向异性缺陷的NbTi带的临界电流,低温,1983,23 (153-159)。在Nb,Sn股的情况下,拉伸和反应过程表明钉扎力是各向同性的。实际上,初步实验表明情况恰恰相反,这就是为什么测量了两种类型的工业Nb3Sn链的临界电流的磁场方向依赖性的原因。这些测量是在最高20 T的场强下对七个场取向进行的。观察到明显的各向异性效应,这不能用Kramer的钉扎定律来解释。结果与Takayasu等人最近的一项研究提出的经验定律非常吻合。 (Takayasu,M.,Montgomery,D.B。和Minervini,J.V。,磁场对多丝绞合超导导线的临界电流的影响,Inst。of Phys.Conf.Ser。,1997,158,917-920)。该法则中使用的参数可能特定于制造过程。 (C)1999 Elsevier ScienceLtd。保留所有权利。 [参考:7]

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