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SIMULATION OF STRESSES DURING CASTING OF BINARY MAGNESIUM-ALUMINUM ALLOYS

机译:二元镁 - 铝合金铸造过程中应力的模拟

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A visco-plastic deformation model is used to predict thermal stresses during casting of binary Mg-Al alloys. The predictions are compared to experiments that allow for the measurement of contraction forces during solidification and cooling. These force measurements, together with estimates from data found in the literature, are used to obtain the high-temperature mechanical properties needed in the stress model. The simulation results show generally good agreement with the measurements. The coherency and yielding behavior of the semi-solid material during solidification is investigated in some detail. It is found that coherency starts at a solid fraction of about 0.5 and that the maximum tensile stress at the final solidification temperature is 1.5 MPa and 4 MPa for Mg-1 and 9wt.%Al alloys, respectively.
机译:粘型塑性变形模型用于预测二元Mg-Al合金铸造期间的热应力。将预测与实验进行比较,其允许在凝固和冷却期间测量收缩力。这些力测量与文献中发现的数据的估计一起用于获得应力模型所需的高温机械性能。仿真结果与测量结果完全良好。详细研究了半固体材料在凝固过程中的相干性和产生行为。结果发现,相干性在约0.5的固体分数开始,并且最终凝固温度下的最大拉应力分别为1.5MPa和4MPa的Mg-1和9wt。%Al合金。

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