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Identification methodology and comparison of phenomenological ductile damage models via hybrid numerical-experimental analysis of fracture experiments conducted on a zirconium alloy

机译:锆合金断裂实验的混合数值-实验分析的识别方法和表观延性损伤模型的比较

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摘要

The present study details the methodology of the identification process of uncoupled damage formulations proposed by Bai and Wierzbicki (B&W model - Bai and Wierzbicki (2008) and Modified Mohr-Coulomb - Bai and Wierzbicki (2010)) as well as the Lemaitre and enhanced Lemaitre coupled damage models. These uncoupled models were first implemented in the Finite Element (FE) software Forge2009?, then their parameters identifications were carried out. These identifications involve two steps: identification of hardening law parameters and identification of damage parameters. In the first step, the method to obtain the coefficient of a non-linear friction law in compression test is also presented. The second step differs between the above-mentioned models: the identification of uncoupled models is carried out through the experimental fracture strains of different loading paths, while the identification of Lemaitre's model is based on the softening effect of damage. The latter model is enhanced by accounting for the influence of the Lode parameter to improve its ability to predict fracture in shear loading. The results show that, among the studied models, the proposed enhanced Lemaitre model gives overall best results in terms of fracture prediction for all the tests. The proportionality of studied loading paths is also discussed. It is shown that the compression is not suitable to identify the parameters of the studied uncoupled damage models.
机译:本研究详细介绍了Bai和Wierzbicki(B&W模型-Bai和Wierzbicki(2008)以及Mod-Mohr-Coulomb-Bai和Wierzbicki(2010))以及Lemaitre和增强型Lemaitre提出的非耦合损伤公式的识别过程的方法。耦合损伤模型。这些未耦合的模型首先在有限元(FE)软件Forge2009?中实现,然后进行参数识别。这些识别包括两个步骤:识别硬化规律参数和识别损坏参数。第一步,提出了压缩试验中获得非线性摩擦定律系数的方法。第二步是上述模型之间的区别:通过不同载荷路径的试验断裂应变来进行非耦合模型的识别,而通过损伤的软化作用来识别Lemaitre模型。后一种模型通过考虑Lode参数的影响来增强,以提高其预测剪切载荷下裂缝的能力。结果表明,在所研究的模型中,所提出的增强型Lemaitre模型在所有测试的裂缝预测方面都给出了总体最佳结果。还讨论了所研究的加载路径的比例性。结果表明,压缩不适合识别所研究的非耦合损伤模型的参数。

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