Molecular dynamics simulations are used to study the effects of tensile loading on nucleation and subsequent growth of bcc phase in pure fcc iron. The results show that orientation variant selection occurs during the stress-induced fcc-to-bcc transformation, which leads to the coalescence of neighbouring bcc platelets with identical orientation. The bcc phase nucleates mainly following Nishiyama–Wassermann and Kurdjumov–Sachs orientation relationships with the parent fcc phase. The present simulations contribute to a better understanding of mechanisms controlling mechanically induced martensitic transformation as well as coalescence of bcc platelets in steels.Materials Science and Engineering(OLD) MSE-
Using molecular dynamics simulation, we studied the influence of pre-existing dislocations on the au...
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...
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 (MD) simulations are used to study the effect of different defect configurations ...
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 simulations have been used to study the effects of different orientation relation...
Molecular dynamics simulations have been used to study the effects of different orientation relation...
The martensitic transformation in pure Fe and its alloys has been studied over many decades. Several...
We used classical molecular dynamics simulation to study the ferrite–austenite phase transform...
We used classical molecular dynamics simulation to study the ferrite–austenite phase transform...
Using molecular dynamics simulation, we studied the influence of pre-existing dislocations on the au...
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...
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 (MD) simulations are used to study the effect of different defect configurations ...
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 simulations have been used to study the effects of different orientation relation...
Molecular dynamics simulations have been used to study the effects of different orientation relation...
The martensitic transformation in pure Fe and its alloys has been studied over many decades. Several...
We used classical molecular dynamics simulation to study the ferrite–austenite phase transform...
We used classical molecular dynamics simulation to study the ferrite–austenite phase transform...
Using molecular dynamics simulation, we studied the influence of pre-existing dislocations on the au...
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...