材料科学
共晶体系
旋节分解
原子探针
合金
高熵合金
微观结构
旋节
透射电子显微镜
热力学
成核
纳米-
过冷
相(物质)
冶金
复合材料
纳米技术
化学
物理
有机化学
作者
J. Charkhchian,A. Zarei‐Hanzaki,A. Moshiri,H.R. Abedi,Tim M. Schwarz,Robert Lawitzki,Guido Schmitz,Kanwal Chadha,Clodualdo Aranas,Jiajia Shen,J.P. Oliveira
标识
DOI:10.1002/adem.202300164
摘要
Herein, the occurrence of a B2‐phase separation and formation of Cr‐rich nano‐precipitates during the solidification process of AlCoCrFeNi 2.1 eutectic high‐entropy alloy is addressed. Toward this end, various advanced characterizations, including high‐resolution transmission electron microscopy and atom probe tomography combined with thermodynamic calculations, are employed. The as‐solidified microstructure is composed of face‐centered cubic (FCC) dendrites and interdendritic regions consisting of a eutectic mixture of FCC and body‐centered cubic (BCC) phases. The presence of uniformly distributed Cr‐rich nano‐precipitates is traced through the BCC B2 phase in the interdendritic area. Regarding the occurrence of upward diffusion and Gibbs free energy variation, the formation of Cr‐rich nano‐precipitates is attributed to the spinodal decomposition where the critical temperature of 800 °C is passed behind during the solidification process. The formation of dense dislocation array in the interdendritic region due to thermal stress induced during solidification is introduced as a pathway for diffusion of alloying elements in the course of cooling stage.
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