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Dynamic Behavior of an AZ31 Alloy Under Varying Strain Rates and Stress Triaxialities

机译:应变率和应力三轴变化下的AZ31合金的动态行为

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Determination of microstructural and mechanical response to real-world loading conditions is imperative for the development of accurate models to predict the failure behavior of structural materials. The dynamic behavior of magnesium alloys is of particular interest to structural industries as lightweight materials must be able to withstand high impact loading. This study examines the influence of dynamic strain rate on the deformation behavior of a polycrystalline, hot-rolled AZ31 Mg alloy under varying stress triaxialities. The high strain rate testing results indicate that an increase in triaxiality leads to a transition in the deformation mechanisms. Subsequent characterization of microstructure and fracture surfaces were correlated to the mechanical response observed. Finally, these findings provide critical insights into the role of stress-state on dynamic behavior of an AZ31 alloy.
机译:确定对实际载荷条件的微观结构和机械响应,对于开发预测结构材料破坏行为的精确模型至关重要。镁合金的动态行为对结构行业特别重要,因为轻质材料必须能够承受高冲击载荷。这项研究研究了动态应变速率对多晶热轧AZ31 Mg合金在不同应力三轴性下的变形行为的影响。高应变率测试结果表明,三轴性的增加导致变形机理的转变。微观结构和断裂表面的后续表征与观察到的机械响应相关。最后,这些发现为应力状态对AZ31合金动态行为的作用提供了重要的见解。

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