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Effect of microporosity on the tensile properties of high-pressure die-cast AM50 magnesium alloy

机译:微孔孔对高压压铸AM50镁合金的拉伸性能的影响

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Cast Magnesium alloys often exhibit large variability in fracture related properties such as ductility. In this study, the characteristics of micro-voids in high-pressure die-cast (HPDC) AM50 alloy were investigated by microstructural detecting. Specimen-to-specimen fractographic analysis of tensile fractured surface was executed to summarize the relation between microporosity and tensile properties. The results indicated that the variability in tensile properties is quantitatively correlated to the areal fraction of porosity in the corresponding fracture surface, which could be expressed by a power law equation. All the results proved that the most highly localized cluster of micro-voids is most preferentially to be the origin of fracture, and then, fracture crack will preferentially propagate through the adjacent regions that with large porosity.
机译:铸造镁合金通常在裂缝相关性质如延性中表现出大的变化。在该研究中,通过微结构检测研究了高压模铸(HPDC)AM50合金中微空隙的特性。执行拉伸裂缝表面的样本与样本的特征分析,总结了微孔率和拉伸性能之间的关系。结果表明,拉伸性质的可变性与相应的裂缝表面中的孔隙率的面积分数定量相关,这可以通过电力法方程表示。所有结果证明,最高度局部的微空隙簇最优先是骨折的起源,然后,骨折裂纹将优先通过具有大孔隙率的相邻区域传播。

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