Shape memory alloys (SMA) exhibit a number of features which are not easily explained by equilibrium thermodynamics, including hysteresis in the phase transformation and ?reverse? shape memory in the high symmetry phase. Processing can change these features: repeated cycling can ?train? the reverse shape memory effect, while changing the amount of hysteresis and other functional properties. These effects are likely to be due to creation of persistent localised defects, which are impossible to study using non-atomistic methods. Here we present a molecular dynamics simulation study of this behaviour. To ensure the largest possible system size, we use a two dimensional binary Lennard-Jones model, which represents a reliable qualitative model s...
ABSTRACT: The shape memory effect and pseudoelasticity that are observed typically with some binary ...
International audienceShape memory alloys (SMAs) offer interesting perspectives in various fields su...
International audienceShape memory alloys (SMAs) offer interesting perspectives in various fields su...
Shape memory alloys (SMA) exhibit a number of features which are not easily explained by equilibrium...
A martensitic phase transition exhibiting shape memory, transformation-induced plasticity, or supere...
Shape memory alloys (SMAs) are exploited in several innovative applications such as biocompatible ac...
Numerous experimental studies have shown that evolution of the martensite microstructure in shape me...
Numerous experimental studies have shown that evolution of the martensite microstructure in shape me...
In this work, a constitutive model is developed that describe the behavior of shape memory alloys un...
The present work proposes a 3D model, based on the thermodynamical coupling of different strain mech...
In this work, a constitutive model is developed that describe the behavior of shape memory alloys un...
Shape memory materials are an important class of active materials with a wide range of applications ...
We use molecular dynamics (MD) with an embedded atom model potential parameterized for NiAl to study...
Martensitic transformations are shape-deforming phase transitions which can be induced in certain al...
A Landau-Ginzburg model describing first order martensitic phase transitions in shape memory alloys ...
ABSTRACT: The shape memory effect and pseudoelasticity that are observed typically with some binary ...
International audienceShape memory alloys (SMAs) offer interesting perspectives in various fields su...
International audienceShape memory alloys (SMAs) offer interesting perspectives in various fields su...
Shape memory alloys (SMA) exhibit a number of features which are not easily explained by equilibrium...
A martensitic phase transition exhibiting shape memory, transformation-induced plasticity, or supere...
Shape memory alloys (SMAs) are exploited in several innovative applications such as biocompatible ac...
Numerous experimental studies have shown that evolution of the martensite microstructure in shape me...
Numerous experimental studies have shown that evolution of the martensite microstructure in shape me...
In this work, a constitutive model is developed that describe the behavior of shape memory alloys un...
The present work proposes a 3D model, based on the thermodynamical coupling of different strain mech...
In this work, a constitutive model is developed that describe the behavior of shape memory alloys un...
Shape memory materials are an important class of active materials with a wide range of applications ...
We use molecular dynamics (MD) with an embedded atom model potential parameterized for NiAl to study...
Martensitic transformations are shape-deforming phase transitions which can be induced in certain al...
A Landau-Ginzburg model describing first order martensitic phase transitions in shape memory alloys ...
ABSTRACT: The shape memory effect and pseudoelasticity that are observed typically with some binary ...
International audienceShape memory alloys (SMAs) offer interesting perspectives in various fields su...
International audienceShape memory alloys (SMAs) offer interesting perspectives in various fields su...