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Creep and elemental partitioning behavior of Mg-Al-Ca-Sn alloys with the addition of Sr

机译:添加Sr的Mg-Al-Ca-Sn合金的蠕变和元素分配行为

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The partitioning of elements during solidification can strongly affect precipitation and solute strengthening during creep, especially in alloys where creep is controlled by viscous glide of dislocations. Elemental partitioning during solidification and its influence on creep behavior has been examined for Mg-6.5A1-2.25Ca-0.8Sn with and without 0.25wt% Sr additions. The alloy containing Sr experienced increased partitioning of Al and Ca to the a-Mg phase. However, the creep behavior in compression at 110 MPa and 180℃ was not significantly different from that of the alloy without Sr. These observations are discussed in terms of current models for solid solution and precipitation strengthening. In addition, it was determined that the elemental partitioning profiles of permanent mold cast specimens were representative of the grain interiors of die-cast specimens. The partitioning profiles may be less representative for interdendritic regions of the microstructure, however.
机译:凝固过程中元素的分配会严重影响蠕变过程中的沉淀和固溶强化,特别是在合金中,蠕变受位错的粘性滑移控制。对于添加和不添加0.25wt%Sr的Mg-6.5A1-2.25Ca-0.8Sn,已经研究了固化过程中的元素分配及其对蠕变行为的影响。含Sr的合金经历了Al和Ca向a-Mg相的分配增加。但是,在110 MPa和180℃压缩时的蠕变行为与没有Sr的合金无显着差异,这些观察结果根据当前的固溶和析出强化模型进行了讨论。另外,确定永久铸模样品的元素分配轮廓代表压铸样品的晶粒内部。然而,对于微结构的树突间区域,分配轮廓可能不太代表。

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