材料科学
成核
极限抗拉强度
粒度
合金
镁合金
冶金
空化
超声波传感器
相(物质)
延伸率
镁
晶界强化
复合材料
微观结构
晶界
热力学
有机化学
化学
物理
声学
作者
Xingrui Chen,Yonghui Jia,Qichi Le,Shaochen Ning,Xiaoqiang Li,Faquan Yu
标识
DOI:10.1016/j.jmrt.2020.06.044
摘要
This work investigated the interaction between in situ grain refiner and ultrasonic treatment (UT) and its influence on the mechanical properties of Mg–Sm–Al magnesium alloy. The grain size is reduced with the increasing of Al content, which is attributed to the enhancement of heterogeneous nucleation by Al2Sm particles. The ultrasonic melt treatment also refines grains via increasing the number of nucleation sites by ultrasonic cavitation. There is a maximum grain refinement efficiency on a certain solidification circumstance. The alloying method (generation the in situ grain refiner) and UT have a positive interaction, which increases the number of potential nucleation particles in melt, while the number of activated nucleation particles is decided by solidification condition. The increase of Al content and UT improve both yield strength and ultimate tensile strength due to grain refinement strengthening and the second phase strengthening. The UT significantly improves the elongation of each alloy with an increasing range of up to 312%. The de-agglomeration of second particles and increased diversity of grain orientation respond to such improvement.
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