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Damage evolution under bending and tensile stress and its influence on critical current of Bi2223/Ag superconducting composite tape

机译:Bi2223 / Ag超导复合带的弯曲拉伸应力损伤演化及其对临界电流的影响

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摘要

The influence of bending and tensile damage introduced at room temperature on the critical current at 77 K under zero magnetic field of a multifilamentary Bi2223/Ag/Ag alloy superconducting composite tape was studied. From the analysis of the tensile stress-strain curve, the residual strain and intrinsic tensile-fracture strain of Bi2223 filaments were estimated, with which the measured change of critical current with tensile strain was accounted for. A simple model, in which the damage evolution in both tensile and compressive sides was incorporated, was proposed to describe the change in critical current with bending strain. The application of the model to the experimental result indicated that the intrinsic compressive-strength of Bi2223 filaments, determining damages in the compressive side, is about five times higher than the tensile strength. (C) 2004 Elsevier B.V. All rights reserved.
机译:研究了多丝Bi2223 / Ag / Ag合金超导复合带在零磁场下室温下弯曲和拉伸损伤对77 K临界电流的影响。通过对拉伸应力-应变曲线的分析,估算出Bi2223细丝的残余应变和固有拉伸断裂应变,并考虑了临界电流随拉伸应变的变化。提出了一个简单的模型,该模型包含了拉伸侧和压缩侧的损伤演化,用于描述临界电流随弯曲应变的变化。该模型在实验结果中的应用表明,确定压缩侧损坏的Bi2223长丝的固有压缩强度大约是拉伸强度的五倍。 (C)2004 Elsevier B.V.保留所有权利。

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