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Sensitivity analysis of quantitative fracture criterion based on the results of the SICO test

机译:基于SICO测试结果的定量断裂判据敏感性分析

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Results of numerical simulation of the SICO test, including the resistance heating of samples and metal flow during the test, are described in this paper. The main goal of the work is the determination of the sensitivity of fracture criteria with respect to the test parameters: temperature, die velocity and material parameters-strain rate sensitivity, hardening coefficient, hardening exponent and temperature sensitivity coefficient. It was shown in earlier research that sensitivity analysis allowed the determination of the extent that the value of the fracture criterion changes with change of the SICO test parameters. Beyond this, the sensitivity analysis reveals which parameters interact with each other. This information is crucial for the inverse analysis if larger numbers of parameters are optimized. The present work is an extension of the authors' earlier research and the variance-based method with correlation ratios is used in the analysis. The results of this analysis contribute to development of more efficient optimization algorithms in the inverse method.
机译:本文介绍了SICO测试的数值模拟结果,包括样品的电阻加热和测试过程中的金属流动。这项工作的主要目的是确定相对于测试参数的断裂准则的敏感性:温度,模具速度和材料参数-应变率敏感性,硬化系数,硬化指数和温度敏感性系数。在较早的研究中表明,敏感性分析可以确定断裂标准值随SICO测试参数的变化而变化的程度。除此之外,敏感性分析还揭示了哪些参数相互影响。如果优化了大量参数,则此信息对于逆分析至关重要。本工作是作者先前研究的扩展,在分析中使用了具有相关比率的基于方差的方法。该分析的结果有助于开发逆方法中更有效的优化算法。

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