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Atomistic simulation of local chemical order in NbTiZrMoV high entropy alloy based on a newly-developed interatomic potential.

Authors :
Duan, Xianbao
Guo, Junyi
Chen, Liuqing
Zhang, Zhipeng
Huang, Xiusong
Liu, Lehua
Shan, Bin
Source :
Computational Materials Science. Aug2023, Vol. 227, pN.PAG-N.PAG. 1p.
Publication Year :
2023

Abstract

[Display omitted] • The MEAM-based interatomic potential was developed for NbTiZrMoV. • The formation of LCOs with B2 structure from the Zr-V pair in NbTiZrMoV was found. • A coupling relationship between lattice distortion and LCO in NbTiZrMoV was found. Numerous studies have demonstrated the importance of local chemical order (LCO) in influencing the mechanical properties of high entropy alloys (HEAs). However, experimental investigation of LCO remains a challenging task. In this paper, the potential parameters for NbTiZrMoV system based on the modified embedded atom method are determined by fitting the lattice constants and formation enthalpies of various binary and ternary alloys. A comparison with the results from first-principles calculations shows that the newly-developed potential has a relatively high accuracy. A hybrid MD/MC simulation is performed using the newly-developed potential to investigate the microstructural evolution of equimolar NbTiZrMoV HEA at room temperature. The simulation results show that clustering and dispersion of different elemental pairs can occur after prolonged annealing. Additionally, the Zr-V pair is observed to form LCOs with B2 structure, which may be an early stage of the experimentally observed Laves phase. Furthermore, the simulation results reveal a relationship between LCO and lattice distortion, indicating that an increase in LCO can lead to a decrease in lattice distortion, which is a significant factor in the investigation of HEA mechanical properties. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09270256
Volume :
227
Database :
Academic Search Index
Journal :
Computational Materials Science
Publication Type :
Academic Journal
Accession number :
164246523
Full Text :
https://doi.org/10.1016/j.commatsci.2023.112269