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Effect of stress triaxiality corrected plastic flow on ductile damage evolution in the framework of continuum damage mechanics

机译:应力三轴校正塑性流对延性损伤力学框架下延性损伤演化的影响

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摘要

Most of the damage models derived from the theory of Lemaitre have been developed using the hypothesis based on "proportional loading" for the determination of some material parameters. This hypothesis is adopted in such a way that a material coefficient (a scale factor for damage values) can be evaluated from tensile tests on unnotched specimens, considering the triaxiality of the stress state to be that corresponding to perfect uniaxiality, over the entire load history, and so ignoring necking induced variations in the triaxiality.The present paper analyses the response of some continuum damage mechanics models which incorporate a correlation between the triaxiality factor and logarithmic plastic strain. These correlation laws, affecting also the true stress-true strain material curve, were derived from experimental data processed using the Bridgman method. Due to the lack of experimental data specifically related to damage evolution, the aim of the study was to evaluate the sensitivity of these models to the variability of the triaxiality parameter during the deformation history.
机译:大多数基于Lemaitre理论的损伤模型都是使用基于“比例载荷”的假设开发的,用于确定某些材料参数。采用这种假设的方式是,在整个载荷历史中,考虑到应力状态的三轴性与完美单轴性相对应,可以从无缺口试样的拉伸试验中评估材料系数(损伤值的比例因子)。本文忽略了颈缩引起的三轴性变化。本文分析了一些连续介质损伤力学模型的响应,该模型结合了三轴性因子与对数塑性应变之间的关系。这些相关定律也影响真实应力-真实应变材料曲线,它们是从使用Bridgman方法处理的实验数据中得出的。由于缺乏与损伤演化特别相关的实验数据,因此本研究的目的是评估这些模型在变形过程中对三轴性参数变化的敏感性。

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