Achieving excellent strength-ductility synergy in twinned NiCoCr medium-entropy alloy via Al/Ta co-doping

被引:6
|
作者
D.D.Zhang [1 ]
H.Wang [2 ]
J.Y.Zhang [1 ]
H.Xue [1 ]
G.Liu [1 ]
J.Sun [1 ]
机构
[1] State Key Laboratory for Mechanical Behavior of Materials, Xi'an Jiaotong University
[2] Science and Technology on Reactor Fuel and Materials Laboratory, Nuclear Power Institute of China
基金
中央高校基本科研业务费专项资金资助; 中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
TG139 [其他特种性质合金];
学科分类号
摘要
Alloying is an effective strategy to tailor microstructure and mechanical properties of metallic materials to overcome the strength-ductility trade-off dilemma. In this work, we combined a novel alloy design principle, i.e. harvesting pronounced solid solution hardening(SSH) based on the misfit volumes engineering,and simultaneously, architecting the ductile matrix based on the valence electron concentrations(VEC)criterion, to fulfill an excellent strength-ductility synergy for the newly emerging high/medium-entropy alloys(HEAs/MEAs). Based on this strategy, Al/Ta co-doping within NiCoCr MEA leads to an efficient synthetic approach, that is minor Al/Ta co-doping not only renders significantly enhanced strength with notable SSH effect and ultrahigh strain-hardening capability, but also sharply refines grains and induces abnormal twinning behaviors of(NiCoCr)92Al6Ta2MEA. Compared with the partially twinned NiCoCr MEA, the yield strength(σy) and ultimate tensile strength(σUTS) of fully twinned Al/Ta-containing MEA were increased by ~102 % to ~600 MPa and ~35 % to ~1000 MPa, respectively, along with good ductility beyond 50 %. Different from the NiCoCr MEA with deformation twins(DTs)/stacking faults(SFs) dominated plasticity, the extraordinary strain-hardening capability of the solute-hardened(NiCoCr)92Al6Ta2MEA, deactivated deformation twinning, originates from the high density of dislocation walls, microbands and abundance of SFs. The abnormal twinning behaviors, i.e., prevalence of annealing twins(ATs)but absence of DTs in(NiCoCr)92Al6Ta2MEA, are explained in terms of the relaxation of grain boundaries(for ATs) and the twinning mechanism transition(for DTs), respectively.
引用
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页码:184 / 195
页数:12
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