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Effect of Alloying Elements on Mechanical Properties for A356 Casting Alloy

机译:合金元素对A356铸造合金机械性能的影响

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A quantitative study of the interactions between microstructural features such as secondary dendrite arm spacing (DAS), eutectic structure and fatigue behavior of two Al-Si-Mg casting alloys with silicon contents of 7 percent and 10 percent respectively, has been conducted. In the condition of minimizing casting defects, the influence of microstructural features on the mechanical performance becomes more pronounced. Depending on the magnesium content affecting the strength of the matrix, the tensile properties were changed upon experimental conditions, the tensile strength was increased with magnesium content, whereas the elongation was increased in the reverse case. The increase of both of high cycle fatigue and low cycle fatigue lives with decreasing the secondary dendritic arm spacing is observed, mainly due to homogeneous deformation owing to the fine size of eutectic silicon and Fe intermetallic particles. The fatigue dynamometer of a diesel cylinder head shows the same tendency with the results of specimen fatigue tests with microstructures.
机译:已经进行了诸如二级树枝状臂间距(DAS)的微观结构特征(DAS),两个Al-Si-Mg铸造合金的微观结构特征(DAS),共晶结构和硅含量分别为7%和10%的疲劳行为的定量研究。在最小化铸造缺陷的条件下,微观结构特征对机械性能的影响变得更加明显。取决于影响基质强度的镁含量,在实验条件下改变拉伸性质,抗拉强度随镁含量而增加,而伸长率在相反的情况下增加。观察到高循环疲劳和低循环疲劳的增加随着逐渐变形而导致均匀的硅和Fe金属间颗粒的细尺寸的均匀变形。柴油缸盖的疲劳测力计显示出与具有微观结构的样本疲劳试验结果相同的趋势。

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