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Sheet metals characterization using the Virtual Fields Method

机译:使用虚拟字段方法的纸张金属表征

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In this work, a characterisation method involving a deep-notched specimen subjected to a tensile loading is introduced. This specimen leads to heterogeneous states of stress and strain, the latter being measured using a stereo DIC system (MatchID). This heterogeneity enables the identification of multiple material parameters in a single test. In order to identify material parameters from the DIC data, an inverse method called the Virtual Fields Method is employed. The method combined with recently developed sensitivity-based virtual fields allows to optimally locate areas in the test where information about each material parameter is encoded, improving accuracy of the identification over the traditional user-defined virtual fields. It is shown that a single test performed at 45° to the rolling direction is sufficient to obtain all anisotropic plastic parameters, thus reducing experimental effort involved in characterisation. The paper presents the methodology and some numerical validation.
机译:在这项工作中,引入了涉及进行抗拉载荷的深缺口样本的表征方法。该样本导致非均相的应力和应变状态,后者使用立体声DIC系统(Matchid)测量。这种异质性使得能够在单个测试中识别多种材料参数。为了从DIC数据识别材料参数,采用称为虚拟字段方法的逆方法。该方法与最近开发的基于灵敏度的虚拟字段结合允许最佳地定位测试中的区域,其中每个材料参数的信息被编码,提高传统用户定义的虚拟字段的识别的准确性。结果表明,在45°至轧制方向上进行的单个测试足以获得所有各向异性塑料参数,从而降低表征所涉及的实验努力。本文提出了方法论和一些数值验证。

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