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Scaling of the critical current in ITER type niobium-tinsuperconductors in relation to the applied field, temperature anduni-axial applied strain

机译:ITER型铌锡超导体中的临界电流与外加电场,温度和单轴外加应变的比例关系

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摘要

The three dimensional surface of the critical current density versus field and temperature Jc(B,T) of niobium-tin is a function of the strain state of the superconductor. A brief review of literature on this subject is presented. The Jc(B) function is described by the relations for flux pinning. The temperature and strain dependencies are added to this relation, This results in a unifying scaling law for A15 materials, which is verified for different niobium-tin conductors with respect to all the relevant variables, i.e. field, temperature and uni-axial strain. Nb3Sn conductors from 9 manufacturers are measured in the frame work of the third ITER benchmark tests on critical current. The investigated ranges are: applied field from 7 to 13 T, temperature from 4.2 to 8 K and applied strain from -0.4 to +0.8%. Special attention is paid to the region of compressive axial strain, which is the most relevant state of strain for superconductors under thermal compression in practical applications
机译:铌锡的临界电流密度与场强和温度Jc(B,T)的三维表面是超导体应变状态的函数。简要介绍了有关该主题的文献。 Jc(B)函数由磁通钉扎的关系描述。温度和应变相关性被添加到该关系中,这导致了A15材料的统一缩放定律,并针对所有相关变量(即场,温度和单轴应变)针对不同的铌锡导体进行了验证。在有关临界电流的第三次ITER基准测试框架中对来自9个制造商的Nb3Sn导体进行了测量。研究范围为:施加的电场为7至13 T,施加的温度为4.2至8 K,施加的应变为-0.4至+ 0.8%。特别要注意轴向压缩应变区域,这是实际应用中超导体在热压缩下最相关的应变状态。

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