Journal of Alloys and Compounds2022,Vol.89310.DOI:10.1016/j.jallcom.2021.162242

Enhancing the strength of AlCrFeNi HEAs via tailoring aluminum content and optimal aging treatment

Wen, Zhiqin Ma, Bo Liu, Junxiao Zou, Zhengguang Zhao, Yuhong Wang, Mingze
Journal of Alloys and Compounds2022,Vol.89310.DOI:10.1016/j.jallcom.2021.162242

Enhancing the strength of AlCrFeNi HEAs via tailoring aluminum content and optimal aging treatment

Wen, Zhiqin 1Ma, Bo 1Liu, Junxiao 1Zou, Zhengguang 1Zhao, Yuhong 2Wang, Mingze1
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作者信息

  • 1. Guilin Univ Technol
  • 2. North Univ China
  • 折叠

Abstract

In this work, AlxCrFeNi (x = 0, 0.5, 1.0) high-entropy alloys (HEAs) were designed by introducing a high atomic radius element Al. And for x = 1.0 quaternary HEAs with equal molar ratios were studied at various aging temperatures. The microstructural evolution and its effect on mechanical properties were discussed. The results suggested that the addition of Al promoted the transition from face centered cubic (FCC) to body centered cubic (BCC) phase, in which the spherical Al-rich and Ni-rich BCC nanoparticles were dispersed in BCC. Addition of Al optimized the brittle ternary CrFeNi HEA's shortcomings, which have high plasticity and poor strength. Besides, the results showed that the transformation of BCC to B2 phase was promoted via increasing aging temperatures. The B2 phase in the mesh structure and short rod structure was Al-rich and Ni-rich. When Al content increased to 0.5 and 1.0, the compressive yield strength increased to 1338.07 MPa and 1079.03 MPa, respectively. While the elongation remained at 15 similar to 20%. The Vickers hardness enhanced from 147.31 HV (x = 0) to 247.76 HV (x = 1.0). When the aging temperature reached 600 degrees C, the compressive ultimate strength and Vickers hardness increased by 165.84 MPa and 218.04 HV compared with as-cast HEAs, respectively. The series of HEAs were evaluated for the correlation between microstructure and mechanical properties. (C) 2021 Elsevier B.V. All rights reserved.

Key words

high-entropy alloys/aluminum content/heat treatment/microstructure/mechanical properties/HIGH-ENTROPY ALLOY/MECHANICAL-PROPERTIES/ANNEALING TREATMENT/AL ADDITION/MICROSTRUCTURE/DEFORMATION/EVOLUTION/BEHAVIOR

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出版年

2022
Journal of Alloys and Compounds

Journal of Alloys and Compounds

EISCI
ISSN:0925-8388
被引量17
参考文献量46
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