The phase field crystal (PFC) method is a density-functional-type model with atomistic resolution and operating on diffusive time scales which has been proven to be an efficient tool for predicting numerous material phenomena. In this work, we first propose a method to predict viscoelastic-creep and mechanical-hysteresis behaviors in a body-centered-cubic (BCC) solid using a PFC method that is incorporated with a pressure-controlled dynamic equation which enables convenient control of deformation by specifying external pressure. To achieve our objective, we use constant pressure for the viscoelastic-creep study and sinusoidal pressure oscillation for the mechanical-hysteresis study. The parametric studies show that the relaxation time in th...
Solid state amorphization, and in particular crystalline to amorphous transformation, can be observe...
The influence of external pressure on the dynamics of crystallization is examined by considering a s...
The three principal mechanisms of plastic flow in crystalline solids at elevated temperature are cry...
A phase-field model of a crystalline material is introduced to develop the necessary theoretical fra...
The mathematical modelling of nonlinear thermo-visco-plastic developments and of phase transitions i...
International audienceA micromechanical study of the viscoplasticity of voided cubic crystals is pre...
Phase-field-crystal (PFC) models constitute a field theoretical approach to solidification, melting,...
The phase-field crystal model in an amplitude equation approximation is shown to provide an accurate...
This paper introduces a combined one-dimensional model for thermoviscoplastic behavior under solid-s...
© 2016 American Physical Society. The phase-field-crystal (PFC) approach extends the notion of phase...
This thesis shows several theoretical improvements to the Phase Field Crystal (PFC) model. Among the...
We introduce a dislocation density tensor and derive its kinematic evolution law from a phase field ...
Summary. A new crystal plasticity phase-field model is developed to simulate microstructure evolutio...
A consistent small-scale description of plasticity and dislocation motion in a crystalline solid is ...
In this work, we present a modified two-mode phase-field crystal (PFC) model for nano-structural evo...
Solid state amorphization, and in particular crystalline to amorphous transformation, can be observe...
The influence of external pressure on the dynamics of crystallization is examined by considering a s...
The three principal mechanisms of plastic flow in crystalline solids at elevated temperature are cry...
A phase-field model of a crystalline material is introduced to develop the necessary theoretical fra...
The mathematical modelling of nonlinear thermo-visco-plastic developments and of phase transitions i...
International audienceA micromechanical study of the viscoplasticity of voided cubic crystals is pre...
Phase-field-crystal (PFC) models constitute a field theoretical approach to solidification, melting,...
The phase-field crystal model in an amplitude equation approximation is shown to provide an accurate...
This paper introduces a combined one-dimensional model for thermoviscoplastic behavior under solid-s...
© 2016 American Physical Society. The phase-field-crystal (PFC) approach extends the notion of phase...
This thesis shows several theoretical improvements to the Phase Field Crystal (PFC) model. Among the...
We introduce a dislocation density tensor and derive its kinematic evolution law from a phase field ...
Summary. A new crystal plasticity phase-field model is developed to simulate microstructure evolutio...
A consistent small-scale description of plasticity and dislocation motion in a crystalline solid is ...
In this work, we present a modified two-mode phase-field crystal (PFC) model for nano-structural evo...
Solid state amorphization, and in particular crystalline to amorphous transformation, can be observe...
The influence of external pressure on the dynamics of crystallization is examined by considering a s...
The three principal mechanisms of plastic flow in crystalline solids at elevated temperature are cry...