TY - JOUR
T1 - Superb strength and ductility balance of a Co-free medium-entropy alloy with dual heterogeneous structures
AU - Lu, Wenjie
AU - Yan, Kang
AU - Luo, Xian
AU - Wang, Yuetang
AU - Hou, Le
AU - Li, Pengtao
AU - Huang, Bin
AU - Yang, Yanqing
N1 - Publisher Copyright:
© 2021
PY - 2022/1/30
Y1 - 2022/1/30
N2 - In present work, we successfully fabricated a novel Co-free non-equiatomic Ni46Cr23Fe23Al4Ti4 medium-entropy alloy with dual heterogeneous structures, i.e. three-levels grain structures and heterogeneous L12 precipitates. Experimental results revealed the dual heterogeneous structures lead to remarkable strength-ductility synergy properties in this Co-free medium-entropy alloy, showing high yield strength and ultimate tensile strength of ~1203 MPa and ~1633 MPa, respectively, remaining an excellent ductility of ~28.7%. Further analyses about strengthening and deformation mechanisms indicated precipitation hardening and hetero-deformation induced hardening contribute the majority strength enhancement, meanwhile deformation-induced hierarchical stacking-faults networks, high density Lomer-Cottrell locks and microstructure features of heterogeneous grains and precipitates substantially facilitate the high work-hardening capacity and excellent tensile ductility.
AB - In present work, we successfully fabricated a novel Co-free non-equiatomic Ni46Cr23Fe23Al4Ti4 medium-entropy alloy with dual heterogeneous structures, i.e. three-levels grain structures and heterogeneous L12 precipitates. Experimental results revealed the dual heterogeneous structures lead to remarkable strength-ductility synergy properties in this Co-free medium-entropy alloy, showing high yield strength and ultimate tensile strength of ~1203 MPa and ~1633 MPa, respectively, remaining an excellent ductility of ~28.7%. Further analyses about strengthening and deformation mechanisms indicated precipitation hardening and hetero-deformation induced hardening contribute the majority strength enhancement, meanwhile deformation-induced hierarchical stacking-faults networks, high density Lomer-Cottrell locks and microstructure features of heterogeneous grains and precipitates substantially facilitate the high work-hardening capacity and excellent tensile ductility.
KW - Co-free
KW - Dual heterogeneous structures
KW - Medium-entropy alloy
KW - Strength-ductility synergy properties
UR - http://www.scopus.com/inward/record.url?scp=85110741916&partnerID=8YFLogxK
U2 - 10.1016/j.jmst.2021.05.023
DO - 10.1016/j.jmst.2021.05.023
M3 - 文章
AN - SCOPUS:85110741916
SN - 1005-0302
VL - 98
SP - 197
EP - 204
JO - Journal of Materials Science and Technology
JF - Journal of Materials Science and Technology
ER -