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Effects of strain rate, temperature and sheet thickness on yield locus of AZ31 magnesium alloy sheet

机译:应变速率,温度和板厚对AZ31镁合金板屈服轨迹的影响

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摘要

Magnesium alloys usually exhibit low ductility at the room temperature due to its hexagonal close-packed structure, but it will be improved at elevated temperature. Therefore, warm press-forming of magnesium alloy sheets is quite attractive. In order to determine the optimum condition of press-forming for magnesium alloy sheets, in the present work, the effects of strain rate, temperature and sheet thickness on the yield locus were experimentally investigated. The yield loci of magnesium alloy (AZ31) sheets with different sheet thickness (0.5 and 0.8 mm) were obtained by performing biaxial tensile tests, using cruciform specimens, at temperatures of 100, 150, 200, 250 and 300 ℃ at strain rates of 10{sup}(-2), 10{sup}(-3) and 10{sup}(-4) s{sup}(-1). Based on the experimental results, the effects of strain rate, temperature and sheet thickness on the yield locus were discussed. The size of yield locus drastically decreases with increasing temperature and decreases with decreasing strain rate. In contrast with the temperature and strain-rate dependence of the yield locus, sheet thickness has no influence on the yield locus. The shape of the yield locus of magnesium sheet is far from the predictions calculated by the yield functions of von Mises, Hill and Cazacu. Instead of these, the yield functions of Logan-Hosford or Barlat is a better choice for the accurate description of biaxial tension stress-strain responses at high temperature.
机译:镁合金由于其六方密堆积结构,通常在室温下表现出低延展性,但在高温下会得到改善。因此,镁合金板的热压成型是非常有吸引力的。为了确定镁合金薄板冲压成形的最佳条件,在本工作中,通过实验研究了应变速率,温度和薄板厚度对屈服点的影响。通过使用十字形试样在100、150、200、250和300℃的温度下以10的应变速率进行双轴拉伸试验,获得了具有不同板厚(0.5和0.8 mm)的镁合金(AZ31)板的屈服点{sup}(-2),10 {sup}(-3)和10 {sup}(-4)s {sup}(-1)。根据实验结果,讨论了应变速率,温度和板厚对屈服轨迹的影响。屈服位点的大小随着温度的升高而急剧减小,并且随着应变率的降低而减小。与屈服点的温度和应变率相关性相反,薄板厚度对屈服点没有影响。镁片材的屈服点的形状与由冯·米塞斯,希尔和卡扎库的屈服函数计算出的预测相差甚远。取而代之的是,Logan-Hosford或Barlat的屈服函数是准确描述高温下双轴拉伸应力-应变响应的更好选择。

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