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Effects of contact resistance between superconductor and stabilizer on stability in oxide-superconducting composites

机译:超导体与稳定剂之间的接触电阻对氧化物超导复合材料稳定性的影响

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摘要

The stability of superconducting composites of an oxide superconductor and a stabilizer with high electrical conductivity was studied theoretically in relation to contact resistance between the superconductor and the metal. The stability parameter of the minimum propagation zone (MPZ) was evaluated from an equilibrium distribution of temperature along the wire. Additional heat generation due to the contact resistance was induced around the normal zone and reduced the size of the MPZ. The relationship between the contact resistance and the stability was calculated numerically by a heat balance equation for the composite. A stability criterion for external disturbances was proposed as the condition for the size of the MPZ asymptotically approaching zero. This stability condition gives an upper limit on the current density as a function of the contact resistance.
机译:从理论上研究了氧化物超导体和高电导率稳定剂的超导复合材料的稳定性,该稳定性与超导体与金属之间的接触电阻有关。最小传播区(MPZ)的稳定性参数是由沿着焊丝的温度平衡分布评估的。由于接触电阻而在正常区域周围产生了额外的热量,从而减小了MPZ的尺寸。通过复合材料的热平衡方程数值计算了接触电阻和稳定性之间的关系。提出了外部扰动的稳定性判据,作为MPZ大小渐近接近零的条件。这种稳定性条件根据接触电阻给出了电流密度的上限。

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