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Heterogeneous tensile test on elastoplastic metallic sheets: Comparison between FEM simulations and full-field strain measurements

机译:弹塑性金属板的异质拉伸试验:有限元模拟与全场应变测量之间的比较

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摘要

The aim of this work is to propose a non-standard tensile test suitable for the identification of material parameters using full-field strain measurements and finite element analysis. The shape of the sample to be used in this new test must verify three criteria: (i) large heterogeneity of the strain in the gauge area, (ii) large strain-paths diversity and (iii) a good sensitivity of the strain field to the material parameters. After identifying the mechanical parameters of a dual-phase steel sheet using σ-ε and r-α curves, samples of different shapes were studied in order to choose the one that presents the best compromise between the three criteria. The comparison between simulated and measured fields shows a qualitative accordance. Taking into account the difference between these fields in the expression of the cost-function to minimize is expected to improve the quality of the identified material parameters.
机译:这项工作的目的是提出一种适用于使用全场应变测量和有限元分析来识别材料参数的非标准拉伸试验。此新测试中使用的样品形状必须验证三个标准:(i)应变区中应变的大异质性;(ii)应变路径的多样性大;(iii)应变场对材料参数。在使用σ-ε和r-α曲线确定了双相钢板的力学参数之后,研究了不同形状的样品,以选择在三个标准之间表现出最佳折衷方案的钢板。模拟场和测量场之间的比较显示出定性的一致性。考虑到成本函数表达式中这些字段之间的差异以最小化,有望提高已识别材料参数的质量。

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