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热处理对AlCoCrFeNi高熵合金微观结构及力学性能的影响

Effect of Heat Treatment on the Microstructure and Mechanical Properties of the AlCoCrFeNi High-Entropy Alloy.

作者信息

Hou Pengyu, Yang Yue, Zhang Leilei, Meng Yi, Cui Yan, Cao Leigang

机构信息

Department of Materials Science and Engineering, North China University of Technology, Beijing 100144, China.

出版信息

Materials (Basel). 2023 Nov 14;16(22):7161. doi: 10.3390/ma16227161.

Abstract

The effect of heat treatment on the microstructure and tensile properties of an as-cast AlCoCrFeNi high-entropy alloy (HEA) was investigated in this paper. The results show that the as-cast AlCoCrFeNi HEA presents a typical FCC dendrite morphology with the interdendritic region consisting of BCC/B2 structure and heat treatment can strongly affect the microstructure and mechanical properties of HEA. Microstructure analysis revealed the precipitation of a nano-sized L1 phase in the FCC dendrite and the formation of the FCC and phases in the interdendritic region after annealing at 700 °C. The coarse B2 phase was directly precipitated from the FCC dendrite in the 900 °C-annealed sample, with the coexistence of the B2, FCC, and σ phases in the interdendritic region. Then, the interdendritic region converted to a B2 and FCC dual-phase structure caused by the re-decomposition of the phase after annealing at 1100 °C. The tensile test results show that the 700 °C-annealed HEA presents the most significant strengthening effect, with increments of corresponding yield strength being about 107%, which can be attributed to the numerous nano-sized L1 precipitates in the FCC dendrite. The mechanical properties of 1100 °C-annealed alloy revert to a level close to that of the as-cast alloy, which can be attributed to the coarsening mechanism of B2 precipitates and the formation of a soft FCC phase in the interdendritic region. The observed variation in mechanical properties during heat treatment follows the traditional trade-off relationship between strength and plasticity.

摘要

本文研究了热处理对铸态AlCoCrFeNi高熵合金(HEA)微观结构和拉伸性能的影响。结果表明,铸态AlCoCrFeNi高熵合金呈现典型的面心立方(FCC)树枝晶形态,枝晶间区域由体心立方(BCC)/B2结构组成,且热处理会强烈影响高熵合金的微观结构和力学性能。微观结构分析显示,在700℃退火后,FCC树枝晶中析出了纳米尺寸的L1相,枝晶间区域形成了FCC和σ相。在900℃退火的样品中,粗大的B2相直接从FCC树枝晶中析出,枝晶间区域同时存在B2、FCC和σ相。然后,在1100℃退火后,由于σ相的再分解,枝晶间区域转变为B2和FCC双相结构。拉伸试验结果表明,700℃退火的高熵合金强化效果最为显著,相应屈服强度增量约为107%,这可归因于FCC树枝晶中大量纳米尺寸的L1析出物。1100℃退火合金的力学性能恢复到接近铸态合金的水平,这可归因于B2析出物的粗化机制以及枝晶间区域中软FCC相的形成。热处理过程中观察到的力学性能变化遵循强度与塑性之间传统的权衡关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/273b/10672926/b1e14c57dae8/materials-16-07161-g001.jpg

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