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首页> 外文期刊>Journal of Magnesium and Alloys >Mathematical modeling of thermo-mechanical behavior of strip during twin roll casting of an AZ31 magnesium alloy
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Mathematical modeling of thermo-mechanical behavior of strip during twin roll casting of an AZ31 magnesium alloy

机译:AZ31镁合金双辊铸造过程中带钢热机械行为的数学模型

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摘要

The effect of set-back distance on the thermo-mechanical behavior of the strip during twin roll casting (TRC) of an AZ31 magnesium alloy was modeled using finite element method (FEM). Model validation was done by comparing the predicted and measured exit strip surface temperature as well as the secondary dendrite arm spacing (SDAS) through the thickness of the sheet to those measured during experiments. Model results showed as the set-back distance increases, the strip exit temperature decreases and the solidification front moves toward the entry of the roll gap. The cast strip also experiences more plastic deformation and consequently, the normal stress on the strip surface and effective strain at the strip center-line increase. Moreover, higher separating forces were predicted for longer set-back distances. Model predictions showed that changing the set-back distance by varying the final thickness has a more significant effect on the temperature and stress-strain fields than altering the nozzle opening height.
机译:使用有限元方法(FEM)对缩回距离对AZ31镁合金双辊铸造(TRC)过程中带钢的热机械行为的影响进行了建模。通过将预测和测量的出口带材表面温度以及通过片材厚度的二次枝晶臂间距(SDAS)与实验过程中测得的温度进行比较,进行模型验证。模型结果表明,随着缩进距离的增加,带材出口温度降低,凝固前沿向辊缝的入口移动。铸造带材还会经历更多的塑性变形,因此,带材表面的法向应力和带材中心线处的有效应变会增加。此外,对于更长的后退距离,预计会有更高的分离力。模型预测表明,通过改变最终厚度来改变后退距离,对温度和应力-应变场的影响要比改变喷嘴开口高度的影响更大。

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