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Size effects influence on conducting properties of Cu-Nb alloy microcomposites at cryogenic temperature

机译:尺寸效应对低温温度下Cu-Nb合金微孔复合材料进行性能的影响

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A comprehensive study has been carried out in relation to the conductivity of heavily deformed Cu-16wt%Nb nanostructured wires at room and cryogenic temperatures. When the true strain exceeds 5, the growth rates of the resistivity qualitatively change the behavior at all temperatures. It is shown that such behavior is defined mostly by interface scattering. At 10 K the stepwise increasing of resistivity has been found, what is speculated as a feature of amorphous regions formation at the interface of Cu/Nb. Simultaneously the superconducting transition temperature (T-cs) falls down due to proximity effect. The deviation of experimental T-cs values from predicted by classical model is discussed.
机译:在室温和低温温度下,已经与大量变形的Cu-16wt%Nb纳米结构线的电导率相关的综合研究。 当真正的应变超过5时,电阻率的生长速率定性地改变了所有温度的行为。 结果表明,这种行为主要通过界面散射来定义。 在10 k下,已经发现了电阻率的逐步增加,推测是在Cu / Nb界面处形成的非晶区域的特征。 同时,超导转变温度(T-CS)由于接近效应而下降。 讨论了通过经典模型预测的实验T-CS值的偏差。

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