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Material model identification from set of experiments and validation by DIC

机译:从DIC的实验和验证的一组实验和验证的材料模型识别

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摘要

A methodology for calibration and validation of material models using more simultaneous experiments is presented. The procedure contains the selection of suitable parameters for identification using a sensitivity analysis, parameters identification, analysis of usability of the material model, and validation of the material model. Three elastoplastic models are evaluated in this study: the bilinear isotropic hardening model with Von Mises yield condition, the bilinear isotropic hardening model with the Hill anisotropic yield condition, and the nonlinear isotropic hardening model with Hill anisotropic yield condition. Five proportional as well as nonproportional monotonic loading experiments conducted on aluminium alloy 2124-T851 are used for the presentation of the inverse approach application, whereas four of them are the source of identification. The validation of calibrated material models is done based on the strain field measurement realised by the Digital Image Correlation method. The nonlinear isotropic hardening rule together with Hill yield condition brings the best description of stress-strain behaviour of the material under investigation.
机译:介绍了使用更多同时实验的校准和验证材料模型的方法。该过程包含使用灵敏度分析,参数识别,材料模型的可用性分析以及材料模型的验证来选择适合识别的合适参数。本研究评估了三种弹性塑料模型:双线性各向同性硬化模型,具有von误屈服条件,与山极性屈服条件的双线性各向同性硬化模型,与山极性屈服条件的非线性各向同性硬化模型。在铝合金2124-T851上进行的五种比例和非储能单调载荷实验用于呈现逆接近应用的呈现,而其中四个是识别源。基于由数字图像相关方法实现的应变场测量来完成校准材料模型的验证。非线性各向同性硬化规则与山坡产量状况一起为正在调查的材料的应力 - 应变行为的最佳描述。

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