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Flow curve modelling of a ZM21 magnesium alloy and finite element simulation in hot deformation

机译:ZM21镁合金的流动曲线建模和热变形中的有限元模拟

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The present investigation deals with the development of a methodology to predict the flow behaviour of the ZM21 magnesium alloy in given intervals of temperature and strain rate by FEM simulation of torsion testing. Equations based on the hyperbolic sine of flow stress and on the multiple linear regression were proposed and implemented into the finite element code. The flow curve shapes obtained by simulation were compared with experimental ones that were not used in the building phase of the equations. It was found that the simulation of torsion tests allows, under given conditions of temperature, strain rate and deformation levels, to obtain flow curve shapes very similar to those obtained by experiments under conditions not included in the building of the models.
机译:本研究涉及在给定温度和应变率的间隔内通过FEM模拟来开发方法,以预测ZM21镁合金的流动性能通过FEM模拟扭转测试。提出了基于流量应力和多元线性回归的双曲正弦的方程,并实现为有限元码。通过模拟获得的流动曲线形状与在方程的建筑阶段不使用的实验结果进行比较。结果发现,扭转试验的模拟允许在给定的温度,应变速率和变形水平条件下获得与通过在不包括在模型建筑物的条件下通过实验获得的流量曲线形状。

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