材料科学
共晶体系
层状结构
合金
微观结构
尼亚尔
定向凝固
延展性(地球科学)
复合材料
高熵合金
冶金
金属间化合物
蠕动
作者
Matheus Wischi,Kaio Niitsu Campo,L.F. Starck,Eduardo B. Fonseca,Éder Sócrates Najar Lopes,Rubens Caram
标识
DOI:10.1016/j.jmrt.2022.07.065
摘要
Obtaining in-situ composites through the solidification of eutectic alloys is an interesting approach to overcome the trade-off between mechanical strength and ductility. A notable example is the AlCoCrFeNi 2.1 eutectic high-entropy alloy composed of the hard NiAl-rich (B2) and soft CoCrFeNi-rich (L1 2 ) phases. In this study, the directional solidification of the AlCoCrFeNi 2.1 alloy was investigated using a vertical Bridgman setup. Aspects such as conditions for growth at very low rates, regular and anomalous eutectic growth, and mechanical behavior were evaluated. The directionally solidified samples exhibited a well-aligned microstructure with a lamellar morphology, regardless of the growth rate employed. The lamellar spacing followed the Jackson and Hunt model, whereas the growth rate did not induce any significant variations in the phase fraction, chemical composition, phase lattice parameter, and hardness. The mechanical behavior of the AlCoCrFeNi 2.1 alloy, evaluated through compression tests, was improved in comparison to materials similar to its constituent phases, namely the NiAl (B2) and CoCrFeNi (FCC) alloys.
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