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Small Fatigue Crack Growth Observations in an Extruded Magnesium Alloy

机译:挤出镁合金中的小疲劳裂纹生长观察

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The purpose of this paper is to quantify the microstructurally small/physically small crack growth behavior in an extruded AZ61 magnesium alloy. Fully-reversed, interrupted load control tests were conducted on notched specimens that were taken from a magnesium alloy extrusion. In order to measure crack growth, replicas of the notch surface were made using a two-part silicon-rubber compound at periodic cyclic intervals. Scanning electron microscopy analysis of the replica surfaces revealed multi site crack initiation and subsequent crack coalescence. The crack growth behavior of the small fatigue cracks was shown to have a strong dependence on the material microstructure as the crack was submitted to a tortuous growth path along grain boundaries and crystallographic slip planes. A microstructurally dependent crack growth model that was previously developed for FCC metals was further extended here to HCP metals.
机译:本文的目的是在挤出的AZ61镁合金中量化微观结构小/物理小的裂纹生长行为。在从镁合金挤出中取出的缺口样品上进行完全反转的中断的负载控制试验。为了测量裂纹生长,在周期性循环间隔处使用两件硅 - 橡胶化合物制备凹口表面的复制品。复制表面的扫描电子显微镜分析显示了多位点裂纹启动和随后的裂缝结合。显示小疲劳裂缝的裂纹生长行为具有强依赖材料微观结构,因为沿晶界和晶体滑坡的曲折增长路径提交到曲折的生长路径。这里进一步扩展到HCP金属以前为FCC金属开发的微结构依赖性裂纹生长模型。

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