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Identification of Material Parameters for Plasticity Models: A Comparative Study on the Finite Element Model Updating and the Virtual Fields Method

机译:塑性模型材料参数的识别:有限元模型更新的比较研究与虚拟字段方法

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The identification of material parameters, for a given constitutive model, can be seen as the first step before any practical application. In the last years, the field of material parameters identification received an important boost with the development of full-field measurement techniques, such as Digital Image Correlation. These techniques enable the use of heterogeneous displacement/strain fields, which contain more information than the classical homogeneous tests. Consequently, different techniques have been developed to extract material parameters from full-field measurements. In this study, two of these techniques are addressed, the Finite Element Model Updating (FEMU) and the Virtual Fields Method (VFM). The main idea behind FEMU is to update the parameters of a constitutive model implemented in a finite element model until both numerical and experimental results match, whereas VFM makes use of the Principle of Virtual Work and does not require any finite element simulation. Though both techniques proved their feasibility in linear and nonlinear constitutive models, it is rather difficult to rank their robustness in plasticity. The purpose of this work is to perform a comparative study in the case of elasto-plastic models. Details concerning the implementation of each strategy are presented. Moreover, a dedicated code for VFM within a large strain framework is developed. The reconstruction of the stress field is performed through a user subroutine. A heterogeneous tensile test is considered to compare FEMU and VFM strategies.
机译:对于给定的本构模型,识别材料参数,可以看作是在任何实际应用之前的第一步。在过去几年中,材料参数识别领域随着诸如数字图像相关的全场测量技术的发展得到了重要的提升。这些技术使得能够使用异构位移/应变场,其包含比经典均质测试更多的信息。因此,已经开发了不同的技术来从全场测量中提取材料参数。在本研究中,解决了这些技术中的两种,该技术是有限元模型更新(FEMU)和虚拟字段方法(VFM)。 Femu背后的主要思想是更新在有限元模型中实现的本构模型的参数,直到数值和实验结果匹配,而VFM利用虚拟工作原理并且不需要任何有限元模拟。虽然这两种技术都证明了它们在线性和非线性本构模型的可行性,但它相当难以将其塑性稳健性排名。这项工作的目的是在弹塑性模型的情况下进行比较研究。提出了关于实施每个策略的详细信息。此外,开发了大应变框架内的VFM专用代码。应力场的重建通过用户子例程执行。非均相拉伸试验被认为比较FEMU和VFM策略。

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