Large-scale atomistic simulations with classical potentials can provide valuable insights into microscopic deformation mechanisms and defect-defect interactions in materials. Unfortunately, these assets often come with the uncertainty of whether the observed mechanisms are based on realistic physical phenomena or whether they are artifacts of the employed material models. One such example is the often reported occurrence of stable planar faults (PFs) in body-centered cubic (bcc) metals subjected to high strains, e.g., at crack tips or in strained nano-objects. In this paper, we study the strain dependence of the generalized stacking fault energy (GSFE) of 110 planes in various bcc metals with material models of increasing sophistication, i....
Starting from a semi-empirical potential designed for Cu, we have developed a series of potentials t...
The plastic flow behavior of bcc transition metals up to moderate temperatures is dominated by the t...
Using multi-ion MGPT interatomic potentials derived from first- principles generalized pseudopotenti...
Large-scale atomistic simulations with classical potentials can provide valuable insights into micro...
Stacking fault energy (SFE) plays an important role in deformation mechanisms and mechanical propert...
The Nickel-based Cantor-type concentrated alloys have drawn tremendous research interest as they exh...
The generalized stacking fault energy (GSFE) is a material property that can provide invaluable insi...
Nanostructured metallic materials have gained significant interest for their superior performance in...
MasterRecently, it has been revealed that intragranular deformation mechanism for FCC crystalline me...
The deformation of metals is known to be largely affected by their stacking fault energies (SFEs). I...
DoctorThe activation of plastic deformation mechanisms determines the mechanical behavior of crystal...
Configurational atomistic forces contribute to the configurational mechanics (i.e. non-equilibrium) ...
The size effects of nano-spaced basal stacking faults (SFs) on the tensile strength and deformation ...
The content of this thesis consists of two parts. For the first part, size and crystallographic orie...
Determining the competition between the {110}⟨111⟩, {112}⟨111⟩ and {123}⟨111⟩ slip systems in body-c...
Starting from a semi-empirical potential designed for Cu, we have developed a series of potentials t...
The plastic flow behavior of bcc transition metals up to moderate temperatures is dominated by the t...
Using multi-ion MGPT interatomic potentials derived from first- principles generalized pseudopotenti...
Large-scale atomistic simulations with classical potentials can provide valuable insights into micro...
Stacking fault energy (SFE) plays an important role in deformation mechanisms and mechanical propert...
The Nickel-based Cantor-type concentrated alloys have drawn tremendous research interest as they exh...
The generalized stacking fault energy (GSFE) is a material property that can provide invaluable insi...
Nanostructured metallic materials have gained significant interest for their superior performance in...
MasterRecently, it has been revealed that intragranular deformation mechanism for FCC crystalline me...
The deformation of metals is known to be largely affected by their stacking fault energies (SFEs). I...
DoctorThe activation of plastic deformation mechanisms determines the mechanical behavior of crystal...
Configurational atomistic forces contribute to the configurational mechanics (i.e. non-equilibrium) ...
The size effects of nano-spaced basal stacking faults (SFs) on the tensile strength and deformation ...
The content of this thesis consists of two parts. For the first part, size and crystallographic orie...
Determining the competition between the {110}⟨111⟩, {112}⟨111⟩ and {123}⟨111⟩ slip systems in body-c...
Starting from a semi-empirical potential designed for Cu, we have developed a series of potentials t...
The plastic flow behavior of bcc transition metals up to moderate temperatures is dominated by the t...
Using multi-ion MGPT interatomic potentials derived from first- principles generalized pseudopotenti...