International audienceThe generalized stacking fault energy profile is fundamental to models of metal plasticity and thus a key parameter for alloy design. However, to account for thermal vibrations, models require the stacking fault free energy profile, but current methods can only calculate metastable intrinsic stacking faults. We show how the full stacking fault free energy profile can be calculated using PAFI, a linear scaling method that fully accounts for anharmonic thermal vibrations. Applying our approach to empirical and machine learning potentials for FCC Cu, we show via direct comparison with molecular dynamics simulations that accounting for temperature effects is essential to predict the statistics of partial dislocation separa...
Nanostructured metallic materials have gained significant interest for their superior performance in...
Using first-principles methods, we investigate the effect of Al on the generalized stacking fault en...
The generalized stacking fault energy (GSFE) is a material property that can provide invaluable insi...
We present comparative analysis of microscopic mechanisms relevant to plastic deformation of the fac...
Stacking fault energy (SFE) plays an important role in deformation mechanisms and mechanical propert...
Dislocations in fcc crystals are studied here in several length and time scale regimes starting from...
The temperature-dependent intrinsic stacking fault Gibbs energy is computed based on highly converge...
The generalized stacking fault energy is a key ingredient to mesoscale models of dislocations. Here ...
In a number of fcc materials such as copper or aluminum, as well as more complex materials such as t...
The stacking fault energy is connected to the response of crystals to deformation. Here the authors ...
Irradiation hardening due to voids can be a significant result of radiation damage in metals, but tr...
The purpose of the current work is the development of a phase field model for dislocation dissociati...
Starting from a semi-empirical potential designed for Cu, we have developed a series of potentials t...
As characteristic length scales shrink (\u3c100 nm) in fcc metals, alternative deformation mechanism...
The linking of atomistic simulations of stress-driven processes to experimentally observed mechanica...
Nanostructured metallic materials have gained significant interest for their superior performance in...
Using first-principles methods, we investigate the effect of Al on the generalized stacking fault en...
The generalized stacking fault energy (GSFE) is a material property that can provide invaluable insi...
We present comparative analysis of microscopic mechanisms relevant to plastic deformation of the fac...
Stacking fault energy (SFE) plays an important role in deformation mechanisms and mechanical propert...
Dislocations in fcc crystals are studied here in several length and time scale regimes starting from...
The temperature-dependent intrinsic stacking fault Gibbs energy is computed based on highly converge...
The generalized stacking fault energy is a key ingredient to mesoscale models of dislocations. Here ...
In a number of fcc materials such as copper or aluminum, as well as more complex materials such as t...
The stacking fault energy is connected to the response of crystals to deformation. Here the authors ...
Irradiation hardening due to voids can be a significant result of radiation damage in metals, but tr...
The purpose of the current work is the development of a phase field model for dislocation dissociati...
Starting from a semi-empirical potential designed for Cu, we have developed a series of potentials t...
As characteristic length scales shrink (\u3c100 nm) in fcc metals, alternative deformation mechanism...
The linking of atomistic simulations of stress-driven processes to experimentally observed mechanica...
Nanostructured metallic materials have gained significant interest for their superior performance in...
Using first-principles methods, we investigate the effect of Al on the generalized stacking fault en...
The generalized stacking fault energy (GSFE) is a material property that can provide invaluable insi...