A martensitic phase transition exhibiting shape memory, transformation-induced plasticity, or superelasticity typically involves a transformation between a high temperature, high symmetry phase and a low temperature, low symmetry phase. There have been numerous attempts using molecular dynamics to simulate the shape memory behavior, where the memory is stored in a twinned martensite and deformation occurs by motion of twin boundaries. However, the 3D case has always proved elusive, because suitable interatomic potentials to produce a unique low temperature phase are difficult to obtain. Here we present a study in which the binary Morse potential is tuned specifically to maximize the difference between L1_{0} and B19 (Strukturbericht notatio...
Shape memory alloys (SMAs) owe their distinct properties to a diffusion less martensitic phase trans...
Materials with nanoscale dimensions show mechanical and structural properties different to those at ...
Needle-like twins are observed experimentally within the transition layer at the martensite-twinned ...
We study a system of classical particles in two dimensions interacting through an isotropic pair pot...
We consider a model of shape memory materials in which hierarchical twinning near the habit plane (a...
We consider a model of shape memory materials in which hierarchical twinning near the habit plane (a...
We study a system of classical particles in two dimensions interacting through an isotropic pair pot...
Shape memory alloys (SMA) exhibit a number of features which are not easily explained by equilibrium...
Shape memory alloys (SMA) exhibit a number of features which are not easily explained by equilibrium...
Martensitic transformations are shape-deforming phase transitions which can be induced in certain al...
Shape memory alloys (SMAs) are functional materials that recover from large strains without permanen...
Shape memory alloys (SMAs) are functional materials that recover from large strains without permanen...
Shape memory materials are an important class of active materials with a wide range of applications ...
Diffusionless phase transitions are at the core of the multifunctionality of (magnetic) shape memory...
The specific behavior of Shape Memory Alloys (SMA) is due to a solid-solid transformation called mar...
Shape memory alloys (SMAs) owe their distinct properties to a diffusion less martensitic phase trans...
Materials with nanoscale dimensions show mechanical and structural properties different to those at ...
Needle-like twins are observed experimentally within the transition layer at the martensite-twinned ...
We study a system of classical particles in two dimensions interacting through an isotropic pair pot...
We consider a model of shape memory materials in which hierarchical twinning near the habit plane (a...
We consider a model of shape memory materials in which hierarchical twinning near the habit plane (a...
We study a system of classical particles in two dimensions interacting through an isotropic pair pot...
Shape memory alloys (SMA) exhibit a number of features which are not easily explained by equilibrium...
Shape memory alloys (SMA) exhibit a number of features which are not easily explained by equilibrium...
Martensitic transformations are shape-deforming phase transitions which can be induced in certain al...
Shape memory alloys (SMAs) are functional materials that recover from large strains without permanen...
Shape memory alloys (SMAs) are functional materials that recover from large strains without permanen...
Shape memory materials are an important class of active materials with a wide range of applications ...
Diffusionless phase transitions are at the core of the multifunctionality of (magnetic) shape memory...
The specific behavior of Shape Memory Alloys (SMA) is due to a solid-solid transformation called mar...
Shape memory alloys (SMAs) owe their distinct properties to a diffusion less martensitic phase trans...
Materials with nanoscale dimensions show mechanical and structural properties different to those at ...
Needle-like twins are observed experimentally within the transition layer at the martensite-twinned ...