AbstractThe mechanisms for heterogeneous cubic→tetragonal martensite nucleation due to different types of microscopic defects (voids, stress-concentration site, inertial inclusion and pre-existing nucleus) and the temporal evolution of martensite morphology are monitored with finite element simulation of phase filed model. The results demonstrate that the nucleation prefers to occur around void and stress-concentration site initially; high residual stress exists around inertial inclusion; pre-existing nucleus promotes nearby martensite phase to develop on it. The effects of various defects on heterogeneous nucleation are different, and stress relaxation behavior is the dominant factor which characterizes the whole microstructure evolution p...
Thermodynamically consistent phase field approach (PFA) for multivariant martensitic phase transform...
We describe the microstructure, shape and dynamics of growth of a droplet of martensite nucleating i...
The dynamical nucleation of martensite in polycrystals is simulated by means of Lagrange–Rayleigh d...
The phase-field microelasticity theory has exhibited great capacities in studying elasticity and its...
A description of heterogeneous nucleation at a single defect, followed by the evolution of the nucle...
Theoretical approaches to the nucleation of martensitic transformations have considered two types of...
Abstrac t. High-performance large-scale molecular-dynamics (MD) simulations provide an atom-istic in...
Simulations of first order martensitic transformations from a square to a triangular lattice using a...
High-performance large-scale molecular-dynamics (MD) simulations provide an atomistic insight of the...
High-performance large-scale molecular-dynamics (MD) simulations provide an atomistic insight of the...
AbstractA complete system of coupled phase-field and mechanical equations for the simulation of mult...
Morphological characteristics of martensite after B2-B19 transformation are considered within the li...
Abstract. The role of dislocations and the dynamical mechanism controlling the structural reconstruc...
A phase-field simulation is performed to study the substructure evolution of lenticular martensite i...
The aim of this PhD. thesis is to use molecular dynamics (MD) simulations to comprehend the mechanis...
Thermodynamically consistent phase field approach (PFA) for multivariant martensitic phase transform...
We describe the microstructure, shape and dynamics of growth of a droplet of martensite nucleating i...
The dynamical nucleation of martensite in polycrystals is simulated by means of Lagrange–Rayleigh d...
The phase-field microelasticity theory has exhibited great capacities in studying elasticity and its...
A description of heterogeneous nucleation at a single defect, followed by the evolution of the nucle...
Theoretical approaches to the nucleation of martensitic transformations have considered two types of...
Abstrac t. High-performance large-scale molecular-dynamics (MD) simulations provide an atom-istic in...
Simulations of first order martensitic transformations from a square to a triangular lattice using a...
High-performance large-scale molecular-dynamics (MD) simulations provide an atomistic insight of the...
High-performance large-scale molecular-dynamics (MD) simulations provide an atomistic insight of the...
AbstractA complete system of coupled phase-field and mechanical equations for the simulation of mult...
Morphological characteristics of martensite after B2-B19 transformation are considered within the li...
Abstract. The role of dislocations and the dynamical mechanism controlling the structural reconstruc...
A phase-field simulation is performed to study the substructure evolution of lenticular martensite i...
The aim of this PhD. thesis is to use molecular dynamics (MD) simulations to comprehend the mechanis...
Thermodynamically consistent phase field approach (PFA) for multivariant martensitic phase transform...
We describe the microstructure, shape and dynamics of growth of a droplet of martensite nucleating i...
The dynamical nucleation of martensite in polycrystals is simulated by means of Lagrange–Rayleigh d...