TY - JOUR
T1 - Co-free non-equilibrium medium-entropy alloy with outstanding tensile properties
AU - Lu, Wenjie
AU - Luo, Xian
AU - Yang, Yanqing
AU - Le, Wei
AU - Huang, Bin
AU - Li, Pengtao
N1 - Publisher Copyright:
© 2020 Elsevier B.V.
PY - 2020/8/25
Y1 - 2020/8/25
N2 - In this work, we report a novel Co-free non-equiatomic Ni57.6Cr19.2Fe19.2Nb4 medium-entropy alloy (MEA) with outstanding tensile properties. We systematically investigate its microstructure, strengthening and deformation mechanisms combined by XRD, EBSD and TEM investigations. Experimental results demonstrate this Co-free MEA strengthened by nanosized coherent D022- (Ni, Cr, Fe)3(Nb, Fe)-type precipitate (γ′′ phase) with disk shape. This γ′′-precipitation strengthened MEA exhibits the outstanding strength-ductility synergy, showing a high yield strength of ∼960 MPa, tensile strength of ∼1320 MPa and an excellent ductility of ∼34%. The nanosized γ′′ phases bought out effective precipitation strengthening in this Co-free MEA, contributing a majority yield strength enhancement of ∼660 MPa. For this γ′′-precipitation strengthened MEA, the dominant deformation model was the stacking-faults controlled mode, which resulted in a slight ductility sacrifice, in comparison with the solid solution treated MEA. Our work provides solid foundations for further development of high performance Co-free MEAs/(high-entropy alloys) HEAs.
AB - In this work, we report a novel Co-free non-equiatomic Ni57.6Cr19.2Fe19.2Nb4 medium-entropy alloy (MEA) with outstanding tensile properties. We systematically investigate its microstructure, strengthening and deformation mechanisms combined by XRD, EBSD and TEM investigations. Experimental results demonstrate this Co-free MEA strengthened by nanosized coherent D022- (Ni, Cr, Fe)3(Nb, Fe)-type precipitate (γ′′ phase) with disk shape. This γ′′-precipitation strengthened MEA exhibits the outstanding strength-ductility synergy, showing a high yield strength of ∼960 MPa, tensile strength of ∼1320 MPa and an excellent ductility of ∼34%. The nanosized γ′′ phases bought out effective precipitation strengthening in this Co-free MEA, contributing a majority yield strength enhancement of ∼660 MPa. For this γ′′-precipitation strengthened MEA, the dominant deformation model was the stacking-faults controlled mode, which resulted in a slight ductility sacrifice, in comparison with the solid solution treated MEA. Our work provides solid foundations for further development of high performance Co-free MEAs/(high-entropy alloys) HEAs.
KW - D0 superlattice
KW - Medium-entropy alloy
KW - Stacking-faults controlled
KW - Strength-ductility synergy
UR - http://www.scopus.com/inward/record.url?scp=85083186056&partnerID=8YFLogxK
U2 - 10.1016/j.jallcom.2020.155074
DO - 10.1016/j.jallcom.2020.155074
M3 - 文章
AN - SCOPUS:85083186056
SN - 0925-8388
VL - 833
JO - Journal of Alloys and Compounds
JF - Journal of Alloys and Compounds
M1 - 155074
ER -