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Modeling of Flow Stress Considering Dynamic Recrystalliiation for Magnesium Alloy ZK60

机译:考虑动态重结晶的镁合金ZK60的流应力建模

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Hot compressive deformation behavior of ZK60 magnesium alloy was investigated at the temperature range from 523 to 673 K and strain rate range from 0.001 to 1 s~(-1) on Gleeble-1500 thermal simulator. The results show that flow stress of ZK60 magnesium alloy decreases with the increase of deformation temperature and the decrease of strain rate. The flow stress curves obtained from experiments are composed of four different stages, i.e., work hardening stage, transition stage, softening stage, and steady stage, while for the relative high temperature and low strain rate, transition and softening stages are not very obvious. The onset of dynamic recrystallization (DRX) occurred before the stress peak in true stress-true strain curve. The critical stress characterizing the onset of DRX rises with the increase of strain rate and the decrease of deformation temperature. A method to predict flow stress considering the effect of true strain was presented. Flow stress model is expressed by nine independent parameters, and they are obtained by the least-square method. The predicted stress-strain curves are in good agreement with the experimental results, which confirmed that the proposed model can give an accurate and precise estimate of the flow stress for ZK60 magnesium alloy.
机译:在Gleeble-1500热模拟仪上研究了ZK60镁合金在523〜673 K温度范围内,应变速率在0.001〜1 s〜(-1)范围内的热压缩变形行为。结果表明,ZK60镁合金的流变应力随着变形温度的升高和应变速率的降低而减小。实验得到的流变应力曲线由工作硬化阶段,过渡阶段,软化阶段和稳定阶段四个不同阶段组成,而在较高的高温和低应变速率下,过渡阶段和软化阶段不是很明显。动态再结晶(DRX)的发生发生在真实应力-真实应变曲线中的应力峰值之前。随着应变速率的增加和变形温度的降低,表征DRX开始的临界应力也随之增加。提出了一种考虑真实应变影响的流变应力预测方法。流动应力模型由9个独立参数表示,并通过最小二乘法获得。预测的应力-应变曲线与实验结果吻合良好,证实了所提出的模型可以对ZK60镁合金的流动应力进行准确而精确的估计。

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