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Modelling of Bauschinger effect by various constitutive relations derived from thermodynamical formulation

机译:通过热力学公式推导的各种本构关系对鲍辛格效应进行建模

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摘要

Bauschinger effect in an AISI 316L austenitic stainless steel at room temperature was studied as a function of the plastic prestrain. Typical uni-axial Bauschinger tests in tension-compression and in compression-tension were carried out. Internal and effective stresses were evaluated from the experimental stress-strain curves using the method proposed by Kuhlmann-Wilsdorf and Laird. Four constitutive relations derived from a thermodynamical formulation were identified using an inverse identification method. The modelled stress-strain curves were then compared to the experimental ones. Bauschinger effect was characterised using Bauschinger indicators proposed in the literature in terms of strain, stress and energy, respectively. These indicators were evaluated from the experimental stress-strain curves on the one hand, from the modelled ones on the other hand. Their variations as functions of prestrain were then compared. The best constitutive relation uses two non-linear kinematic work-hardening terms.
机译:研究了室温下AISI 316L奥氏体不锈钢中的鲍辛格效应与塑料预应变的关系。进行了拉伸-压缩和压缩-拉伸的典型单轴Bauschinger试验。使用Kuhlmann-Wilsdorf和Laird提出的方法从实验应力-应变曲线评估内部和有效应力。使用逆识别方法识别了从热力学公式得出的四个本构关系。然后将建模的应力-应变曲线与实验曲线进行比较。使用文献中提出的包辛格指标分别描述了包辛格效应的应变,应力和能量。这些指标一方面是通过实验的应力-应变曲线评估的,另一方面是通过建模的评估。然后比较它们作为预应变函数的变化。最佳本构关系使用两个非线性运动学强化项。

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