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Mechanical design of a heterogeneous test for material parameters identification

机译:用于材料参数识别的异构测试的机械设计

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摘要

The main goal of this work is to design virtually a heterogeneous test, with appropriate specimen shape and boundary conditions, which leads to an inhomogeneous strain field promoting the mechanical behavior characterization of thin metallic sheets under several strain paths and strain amplitudes. Finite element simulations were carried out with a virtual material, described by an anisotropic yield criterion (Yld2004-18p) associated to a mixed hardening law. The material parameters were derived from a large experimental database of quasi-homogeneous classical tests. A shape and boundary conditions optimization process was developed based on a quantitative indicator rating the strain field information and used as a cost function for guiding the test design. A heterogeneous test showing a butterfly shape was obtained, with strain states ranging from simple shear to plane strain tension. In addition, the designed heterogeneous test was used to determine the material parameters of the aforementioned constitutive model. The reliability of this identified material parameters set was then assessed and compared with the one coming from the experimental database composed by the quasi-homogeneous classical tests.
机译:这项工作的主要目标是设计一个具有适当试样形状和边界条件的异质测试,从而产生不均匀的应变场,从而促进薄金属板在多个应变路径和应变幅度下的力学行为表征。使用虚拟材料进行有限元模拟,该虚拟材料由与混合硬化定律相关的各向异性屈服准则 (Yld2004-18p) 描述。材料参数来自准均质经典测试的大型实验数据库。基于定量指标对应变场信息进行评级,开发了形状和边界条件优化过程,并作为指导试验设计的代价函数。获得了显示蝴蝶形状的异质测试,应变状态范围从简单剪切到平面应变张力。此外,还利用设计的异构检验确定了上述本构模型的材料参数。然后评估了该已识别材料参数集的可靠性,并将其与来自由准均质经典测试组成的实验数据库的参数进行比较。

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