材料科学
成核
极限抗拉强度
粒度
动态再结晶
挤压
合金
延伸率
冶金
晶界
纹理(宇宙学)
微观结构
热加工
热力学
人工智能
物理
图像(数学)
计算机科学
作者
Li Fu,Wenxin Hu,Qichi Le,Zheng Jia,Lin Lu
标识
DOI:10.1002/adem.201901215
摘要
Herein, the effect of Sm on precipitates, grain sizes, and tensile properties of AZ31–0.3La alloy is investigated. Results indicate that Sm is almost dissolved in α‐Mg matrix with 0.2% content, whereas Al 2 Sm with two kinds of morphologies forms with further Sm addition. The grain sizes of as‐cast studied alloy increase first and then decrease with increasing Sm addition, whereas the dynamic recrystallization (DRX) grain sizes decrease first and then increase, and the DRX grain size distribution is uniform first and then uneven. During the hot extrusion process, the refinement of DRXed grains is attributed to the particle‐stimulated nucleation (PSN) mechanism. The R p0.2 (yield strength) of as‐extruded studied alloy is changed from twin‐dominated to slip‐dominated by 0.2% Sm addition, and the basal texture is slightly weakened due to the refined DRX grains and even‐distributed grain size distribution, and the minor solute Sm atoms segregating at grain boundaries. Finally, the R p0.2 of the as‐extruded AZ31–0.3La alloy is gradually enhanced with increasing Sm addition, and the A (elongation) is increased to 25% with 0.2% Sm addition and maintains to about 20% with 0.6–1.7% Sm addition.
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