A crossover behavior in the initial creep stage during nanoindentation with a constant load for a high-entropy-based alloy CoFeNi is found. The holding time and stress in the indentation tests are evaluated to reveal the intrinsic mechanism of the crossover point. It indicated that the initial creep behavior is dominated by the strain-hardening at the beginning and then transit into the dislocation migration induced viscous stage. The transition presents the crossover, where the strain hardening effect predominates in a very short initial period while the viscous stage accounts for most of the initial creep stage with a time-dependent strain rate
There is considerable interest currently in developing and understanding microstructural evolution, ...
The tensile deformation and strain hardening behaviors of an equimolar CoCrFeMnNi high-entropy alloy...
In this paper we have studied the mechanisms of so-called ‘indentation creep’ in a zirconium alloy. ...
A crossover behavior in the initial creep stage during nanoindentation with a constant load for a hi...
Time-dependent plastic deformation behavior of nanocrystalline (nc) and coarse-grained (cg) CoCrFeMn...
Spherical nanoindentation was performed at room temperature to characterize the time-dependent plast...
This research article presents an atomistic study on the cyclic nanoindentation of equimolarratio Co...
Dislocation creep behaviors of CoCrFeMnNi were investigated at intermediate temperatures. Shape of c...
The statistical and dynamic behaviors of the displacement-load curves of a high-entropy alloy, Al0...
Nanoindentation creep behavior and underlying mechanisms of nanocrystalline (NC) Ni and NC Ni-20 wt%...
The influence of annealing on the constitutive stress-strain response of nanocrystalline (nc) CoCrFe...
Using the magnetron sputtering technique, two typical high-entropy alloy (HEA) films namely CoCrFeNi...
Nanoindentation experiments are widely used for assessing the local mechanical properties of materia...
High-entropy alloys could replace conventional materials in critical load-bearing applications, owin...
The strain-rate sensitivity of ultrafine-grained aluminum (Al) and nanocrystalline nickel (Ni) is st...
There is considerable interest currently in developing and understanding microstructural evolution, ...
The tensile deformation and strain hardening behaviors of an equimolar CoCrFeMnNi high-entropy alloy...
In this paper we have studied the mechanisms of so-called ‘indentation creep’ in a zirconium alloy. ...
A crossover behavior in the initial creep stage during nanoindentation with a constant load for a hi...
Time-dependent plastic deformation behavior of nanocrystalline (nc) and coarse-grained (cg) CoCrFeMn...
Spherical nanoindentation was performed at room temperature to characterize the time-dependent plast...
This research article presents an atomistic study on the cyclic nanoindentation of equimolarratio Co...
Dislocation creep behaviors of CoCrFeMnNi were investigated at intermediate temperatures. Shape of c...
The statistical and dynamic behaviors of the displacement-load curves of a high-entropy alloy, Al0...
Nanoindentation creep behavior and underlying mechanisms of nanocrystalline (NC) Ni and NC Ni-20 wt%...
The influence of annealing on the constitutive stress-strain response of nanocrystalline (nc) CoCrFe...
Using the magnetron sputtering technique, two typical high-entropy alloy (HEA) films namely CoCrFeNi...
Nanoindentation experiments are widely used for assessing the local mechanical properties of materia...
High-entropy alloys could replace conventional materials in critical load-bearing applications, owin...
The strain-rate sensitivity of ultrafine-grained aluminum (Al) and nanocrystalline nickel (Ni) is st...
There is considerable interest currently in developing and understanding microstructural evolution, ...
The tensile deformation and strain hardening behaviors of an equimolar CoCrFeMnNi high-entropy alloy...
In this paper we have studied the mechanisms of so-called ‘indentation creep’ in a zirconium alloy. ...