In this work, a new hardening model is proposed for the depth-dependent hardness of ion-irradiated polycrystals with obvious grain size effect. Dominant hardening mechanisms are addressed in the model, including the contribution of dislocations, irradiation-induced defects and grain boundaries. Two versions of the hardening model are compared, including the linear and square superposition models. A succinct parameter calibration method is modified to parametrize the models based on experimentally obtained hardness vs. indentation depth curves. It is noticed that both models can well characterize the experimental data of unirradiated polycrystals; whereas, the square superposition model performs better for ion-irradiated materials, therefore...
AbstractNumerous indentation tests in the micrometer and nanometer scale have shown that the measure...
As one of promising candidate materials for fuel claddings and structural components in the Gen-IV f...
Ion implantation is increasingly used as a cost effective and safe alternative to neutron irradiatio...
A mechanistic model was developed for modeling the depth-dependent hardness in ion irradiated metall...
In this work, the authors apply the “top-down” nanoindentation testing method to assess the mechanic...
The phenomenon of irradiation softening has recently been noticed for nickel-based single crystal su...
Specimens of stainless steel reactor internals were irradiated with 240 keV protons and 6 MeV Xe ion...
V-4Ti and V samples were irradiated by H/He ions with various energies to produce a damage plateau i...
In this paper, a self-consistent plasticity theory is proposed to model the mechanical behaviours of...
Nanoindentation is a commonly used method to measure the hardness of surfaces with thin layers, and ...
Nanoindentation in combination with ion irradiation offers the possibility to quantify irradiation h...
AbstractSpecimens of stainless steel reactor internals were irradiated with 240 keV protons and 6 Me...
The ion irradiation hardening behaviors of Fee9 wt% Cr and Fee20 wt% Cr model alloys were investigat...
A model was developed to describe the grain size dependence of hardness (or strength) in nanocrystal...
Ion irradiations are indispensable for exploring radiation effects on materials, for example, radiat...
AbstractNumerous indentation tests in the micrometer and nanometer scale have shown that the measure...
As one of promising candidate materials for fuel claddings and structural components in the Gen-IV f...
Ion implantation is increasingly used as a cost effective and safe alternative to neutron irradiatio...
A mechanistic model was developed for modeling the depth-dependent hardness in ion irradiated metall...
In this work, the authors apply the “top-down” nanoindentation testing method to assess the mechanic...
The phenomenon of irradiation softening has recently been noticed for nickel-based single crystal su...
Specimens of stainless steel reactor internals were irradiated with 240 keV protons and 6 MeV Xe ion...
V-4Ti and V samples were irradiated by H/He ions with various energies to produce a damage plateau i...
In this paper, a self-consistent plasticity theory is proposed to model the mechanical behaviours of...
Nanoindentation is a commonly used method to measure the hardness of surfaces with thin layers, and ...
Nanoindentation in combination with ion irradiation offers the possibility to quantify irradiation h...
AbstractSpecimens of stainless steel reactor internals were irradiated with 240 keV protons and 6 Me...
The ion irradiation hardening behaviors of Fee9 wt% Cr and Fee20 wt% Cr model alloys were investigat...
A model was developed to describe the grain size dependence of hardness (or strength) in nanocrystal...
Ion irradiations are indispensable for exploring radiation effects on materials, for example, radiat...
AbstractNumerous indentation tests in the micrometer and nanometer scale have shown that the measure...
As one of promising candidate materials for fuel claddings and structural components in the Gen-IV f...
Ion implantation is increasingly used as a cost effective and safe alternative to neutron irradiatio...