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MICROSTRUCTURAL RELATIONSHIP IN THE DAMAGE EVOLUTION PROCESS OF AN AZ61 MAGNESIUM ALLOY

机译:AZ61镁合金损伤进化过程中的微观结构关系

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The damage evolution process of magnesium AZ61 alloy under monotonic tensile loading conditions is investigated. Specimens that have been subjected to interrupted tensile loading were examined under optical microscopy to quantify the number density of cracked intermetallic particles as a function of applied strain. Digital image analysis of the optical images was employed to automatically quantify damage by separating cracked from noncracked particles. Lastly, an internal state variable damage model was shown to adequately capture the experimentally observed damage of intermetallic particles in the magnesium AZ61 alloy.
机译:研究了单调拉伸负载条件下镁AZ61合金的损伤进化过程。在光学显微镜下检查已经进行中断拉伸载荷的试样,以定量裂化金属间颗粒的数量密度作为应用菌株的函数。采用光学图像的数字图像分析来通过从非粘土的颗粒分离裂纹来自动量化损坏。最后,显示了内部状态可变损伤模型,以充分捕获镁AZ61合金中的经过实验观察到的金属间颗粒的损伤。

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