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Numerical Simulation On Warm Deep Drawing Of Magnesium Alloy Az31 Sheets

机译:镁合金Az31板材热拉深的数值模拟

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摘要

Warm forming of magnesium alloys has attracted much attention due to the very poor formability of Mg alloys at room temperature. In the present paper, the warm deep drawing of magnesium alloy AZ31 (3 wt.% Al, 1 wt.% Zn) sheets was studied by both the experimental approach and the finite element analysis. The results indicated that the formability of the AZ31 sheets could be improved significantly at elevated temperatures. Sound cups could be formed at 150 ℃ with the highest punch speed of 6 mm/min, while when the forming temperature was increased up to 250 ℃, sound cups could be drawn with the highest punch speed of 120 mm/min. Finite element analyses were performed to investigate the effects of the process parameters on the drawability of rectangular cups and to predict the formation of the process defects. The reasonable agreement between the numerical simulation results and experimental data validated the accuracy of the finite element analysis.
机译:镁合金的热成形由于在室温下镁合金的可成形性非常差而引起了很多关注。在本文中,通过实验方法和有限元分析,研究了镁合金AZ31(3%(重量)Al,1%(重量)Zn)薄板的深冲。结果表明,在高温下可以显着改善AZ31板材的可成形性。声杯可以在150℃的条件下以最高6 mm / min的冲孔速度进行成形,而当成形温度提高到250℃时,可以以120 mm / min的最高冲孔速度进行吸音。进行了有限元分析,以研究工艺参数对矩形杯的可拉伸性的影响,并预测工艺缺陷的形成。数值模拟结果与实验数据的合理吻合验证了有限元分析的准确性。

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