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Multi-stable static states of Bi-based superconducting composites and current instabilities at various operating temperatures

机译:Bi基超导复合材料的多稳态静态和各种工作温度下的电流不稳定性

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摘要

Static thermal and electric states before current instability in the current-carrying conductor like Bi-based superconducting composite are theoretically studied under the assumption that the critical current density of a superconductor and matrix resistivity are the non-linear functions of the temperature at fixed applied magnetic field. The simulation was made for the conduction-cooling conditions at different operating temperatures. The proposed analysis was based on the investigation of the non-isothermal voltage-current characteristics of composite superconductors. It is shown that they may have many-valued stable and unstable branches appearing in accordance with the non-trivial variation of the differential resistivity with increasing temperature. These states, first of all, are due to the temperature change of partial derivative J(c)/partial derivative T and are accompanied with the jump-like current-sharing mechanism. The parameters of the current instability onset as a function of operating temperature are numerically derived accounting for the additional stable branches of the voltage-current characteristics. In particular, it is revealed the existence of the static states when Bi-based composite superconductors may have a stable current distribution in the temperature range increasing up to the critical temperature of a superconductor without redistribution of all transport current into the matrix. The peculiarities of these phenomena are discussed. (c) 2005 Elsevier B.V. All rights reserved.
机译:在假设超导体的临界电流密度和基体电阻率是施加固定磁场时温度的非线性函数的假设下,从理论上研究了载流导体(如Bi基超导复合材料)中电流不稳定之前的静态热和电状态领域。针对不同工作温度下的传导冷却条件进行了仿真。提出的分析是基于对复合超导体的非等温电压-电流特性的研究。结果表明,随着温度的升高,它们的差分电阻率的非平凡变化可能会出现多值稳定和不稳定分支。这些状态首先是由于偏导数J(c)/偏导数T的温度变化所致,并伴随有类似跳跃的均流机制。考虑到电压-电流特性的其他稳定分支,通过数值推导得出电流不稳定性起始值与工作温度的函数关系。特别地,揭示了当Bi基复合超导体在增加到超导体的临界温度的温度范围内具有稳定的电流分布而没有将所有传输电流重新分配到基体中时,存在静态。讨论了这些现象的特殊性。 (c)2005 Elsevier B.V.保留所有权利。

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