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Application of Strain Gradient Plasticity Modelling to High Pressure Torsion

机译:应变梯度塑性建模在高压扭转中的应用

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An analytical model describing the deformation behaviour of copper during the high-pressure torsion (HPT) processing is presented. The model was developed on the microstructural basis where the material is partitioned in two 'phases', the dislocation densities in cell walls and the dislocation densities cell interior, entering the model as scalar internal variables. The resulting 'phase mixture' model is combined with strain gradient theory to account for strain non-uniformity inherent in SPD.rnIt was demonstrated that gradient plasticity model is capable of describing the experimentally observed trends and accounting for a homogenisation of the accumulated shear strain across the HPT sample. The predictions of the model with respect to the ultrafine grain size produced by HPT and evolution of dislocation densities are in good agreement with experimental results reported by other research groups.
机译:提出了描述高压扭转(HPT)过程中铜变形行为的分析模型。该模型是在微观结构基础上开发的,其中将材料分为两个“阶段”,即细胞壁中的位错密度和细胞内部的位错密度,将其作为标量内部变量输入模型。由此产生的“相混合”模型与应变梯度理论相结合,解决了SPD固有的应变不均匀性。rn证明了梯度可塑性模型能够描述实验观察到的趋势,并能解释整个方向上累积的剪切应变的均质化。 HPT样本。关于HPT产生的超细晶粒尺寸和位错密度演变的模型预测与其他研究小组报告的实验结果非常吻合。

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