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Simulation on the relation of distribution of overall critical transport current to that of local one in bent-damaged Bi2223 superconducting composite tape

机译:弯曲损伤的Bi2223超导复合带中整体临界传输电流与局部传输电流的分布关系的模拟

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摘要

The superconducting Bi2223/Ag/Ag alloy composite tape specimens with a length 6 cm, composed of a series circuit of six local elements with a length 1 cm, were bent by 0.37% and 1.0% for measurement of distributions of the overall (6 cm) and local (1 cm) critical transport current and n-value. When the damage amount was small (0.37% bending strain), the distributions of the measured local and overall critical currents were described by the three parameter Weibull distribution function, while when the damage amount was large (1.0% bending strain), those were described by the bimodal Weibull distribution function. The distributions of n-value in the diagram of n-value versus critical current for both local elements and overall specimens were expressed by the regression curve of n-value as a function of critical current and the normal distribution function for the deviation of the measured n-values from the regression curve. The experimentally measured critical current distribution and the diagram of the n-value versus critical current of the overall specimens were reproduced successfully in the computer by inputting the formulated distribution functions for the critical current and n-value of the local elements into the proposed simulation method, which used a Monte Carlo simulation method and a one-dimensional series circuit model for the generated voltage near the transition of superconducting to normal state.
机译:由6个长度为1 cm的局部元素组成的串联电路组成的长度为6 cm的超导Bi2223 / Ag / Ag合金复合胶带样品弯曲了0.37%和1.0%,以测量总体分布(6 cm )和局部(1 cm)临界传输电流和n值。当损伤量较小(弯曲应变为0.37%)时,通过三个参数Weibull分布函数描述测得的局部和总体临界电流的分布;而当损伤量较大(弯曲应变为1.0%)时,则描述了这些分布通过双峰韦布尔分布函数。局部元素和整个试样的n值与临界电流关系图中的n值分布由n值的回归曲线表示,该曲线是临界电流的函数,而正态分布函数是被测偏差的函数回归曲线的n值。通过将公式化的分布函数(局部电流的临界电流和局部元素的n值)输入到拟议的仿真方法中,可以在计算机中成功复制实验测量的临界电流分布以及整个样品的n值与临界电流的关系图,它使用了蒙特卡罗(Monte Carlo)模拟方法和一维串联电路模型,用于在超导转变为正常状态附近产生的电压。

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