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Microstructure evolution and strengthening mechanism of directional solidification Ni40.5Co30Cr11Fe11Al6Ta1.5 high entropy alloy.

Authors :
Liu, Tong
Gao, Xuefeng
Qin, Gang
Su, Yanqing
Guo, Jingjie
Chen, Ruirun
Source :
Materials Characterization. Nov2023, Vol. 205, pN.PAG-N.PAG. 1p.
Publication Year :
2023

Abstract

Directional solidification Ni 40.5 Co 30 Cr 11 Fe 11 Al 6 Ta 1.5 high entropy alloys (HEAs) with different withdraw rates (5 μm/s-100 μm/s) were prepared to reveal the microstructure evolution, the deformation mechanism and the strengthening mechanism. The results show that the solid-liquid (S-L) interface of the alloy changes from convex to planar with the increase of withdraw rates. The primary and second dendritic arm spacing decreases from 248 μm and 53 μm (20 μm/s sample) to 177 μm and 37 μm (100 μm/s sample), respectively. The alloy consists of FCC, L1 2 and topologically close packed (TCP) phases, which is in good agreement with the analysis of phase volume fraction. The L1 2 phases are formed in IR due to the lower mixing enthalpy. The ultimate tensile strength of the alloy increases from 412.36 MPa and 25.75% to 547.89 MPa and 48.1%, respectively. The strength of the alloy is mainly attributed to precipitation strengthening. • The mechanism of phase transformation of directional solidification Ni 40.5 Co 30 Cr 11 Fe 11 Al 6 Ta 1.5 high entropy alloys was revealed. • The ultimate tensile strength of the alloy increases from 412.36 MPa and 25.75% to 547.89 MPa and 48.1%, respectively. • The strength of the alloy is mainly attributed to precipitation strengthening. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10445803
Volume :
205
Database :
Academic Search Index
Journal :
Materials Characterization
Publication Type :
Academic Journal
Accession number :
173474871
Full Text :
https://doi.org/10.1016/j.matchar.2023.113302