材料科学
晶界
降水
合金
旋节分解
挤压
冶金
相(物质)
微观结构
物理
气象学
有机化学
化学
作者
Dongsheng Xie,Hucheng Pan,Zhen Pan,Tong Fu,Zhuoran Zeng,Hongbo Xie,Yuping Ren,Weineng Tang,Gaowu Qin
标识
DOI:10.1080/21663831.2022.2158048
摘要
A new Mg–Sm–Ce–Mn-based alloying system with a large miscibility gap was uncovered, and multi-solute co-segregations at high-angular grain boundaries (HAGBs), dislocations and low-angular grain boundaries (LAGBs) are obtained after the proper extrusion process. During following long-term thermal exposure, the solute along HAGBs gradually evolves into nano-precipitates, while the precipitation process along LAGBs is obviously suppressed due to the intrinsically low-energy character, and numerous G. P. zones and γ" phases are formed in deformed regions, which always keep the limited size and reticular distribution. Consequently, the bimodal-grain structure is thermally stable, and the excellent high-temperature strength can be well maintained.
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