Molecular dynamics simulations have been used to study the effects of different orientation relationships between fcc and bcc phases on the bcc/fcc interfacial propagation in pure iron systems at 300 K. Three semi-coherent bcc/fcc interfaces have been investigated. In all the cases, results show that growth of the bcc phase starts in the areas of low potential energy and progresses into the areas of high potential energy at the original bcc/fcc interfaces. The phase transformation in areas of low potential energy is of a martensitic nature while that in the high potential energy areas involves occasional diffusional jumps of atoms.(OLD) MSE-
An extensive, systematic molecular dynamics (MD) study is performed for analysing the nucleation, ki...
An extensive, systematic molecular dynamics (MD) study is performed for analysing the nucleation, ki...
An extensive, systematic molecular dynamics (MD) study is performed for analysing the nucleation, ki...
Molecular dynamics simulations have been used to study the effects of different orientation relation...
The aim of this PhD. thesis is to use molecular dynamics (MD) simulations to comprehend the mechanis...
The aim of this PhD. thesis is to use molecular dynamics (MD) simulations to comprehend the mechanis...
Molecular dynamics (MD) simulation has been used to study the martensitic transformation in iron at ...
Molecular dynamics simulations are used to study the effects of tensile loading on nucleation and su...
An extensive, systematic molecular dynamics (MD) study is performed for analysing the nucleation, ki...
An extensive, systematic molecular dynamics (MD) study is performed for analysing the nucleation, ki...
Molecular dynamics simulations are used to study the effects of tensile loading on nucleation and su...
Using classical molecular dynamics simulations, we studied the influence that free surfaces exert o...
Molecular dynamics (MD) simulations are used to study the effect of different defect configurations ...
Molecular dynamics (MD) simulations are used to study the effect of different defect configurations ...
An extensive, systematic molecular dynamics (MD) study is performed for analysing the nucleation, ki...
An extensive, systematic molecular dynamics (MD) study is performed for analysing the nucleation, ki...
An extensive, systematic molecular dynamics (MD) study is performed for analysing the nucleation, ki...
An extensive, systematic molecular dynamics (MD) study is performed for analysing the nucleation, ki...
Molecular dynamics simulations have been used to study the effects of different orientation relation...
The aim of this PhD. thesis is to use molecular dynamics (MD) simulations to comprehend the mechanis...
The aim of this PhD. thesis is to use molecular dynamics (MD) simulations to comprehend the mechanis...
Molecular dynamics (MD) simulation has been used to study the martensitic transformation in iron at ...
Molecular dynamics simulations are used to study the effects of tensile loading on nucleation and su...
An extensive, systematic molecular dynamics (MD) study is performed for analysing the nucleation, ki...
An extensive, systematic molecular dynamics (MD) study is performed for analysing the nucleation, ki...
Molecular dynamics simulations are used to study the effects of tensile loading on nucleation and su...
Using classical molecular dynamics simulations, we studied the influence that free surfaces exert o...
Molecular dynamics (MD) simulations are used to study the effect of different defect configurations ...
Molecular dynamics (MD) simulations are used to study the effect of different defect configurations ...
An extensive, systematic molecular dynamics (MD) study is performed for analysing the nucleation, ki...
An extensive, systematic molecular dynamics (MD) study is performed for analysing the nucleation, ki...
An extensive, systematic molecular dynamics (MD) study is performed for analysing the nucleation, ki...
An extensive, systematic molecular dynamics (MD) study is performed for analysing the nucleation, ki...