Shape memory alloys (SMAs) are materials that show reversible, thermo-elastic, diffusionless, displacive (solid to solid) phase transformation, due to the application of temperature and/ or stress (/strain). Among different SMAs, NiTi is a popular one. NiTi shows reversible phase transformation, the shape memory effect (SME), where irreversible deformations are recovered upon heating, and superelasticity (SE), where large strains imposed at high enough temperatures are fully recovered. Phase transformation process in NiTi SMA is a very complex process that involves the competition between developed internal strain and phonon dispersion instability. In NiTi SMA, phase transformation occurs over a wide range of temperature and/ or stress (str...
Title: Modeling of phase transformations in shape memory materials Author: Miroslav Frost Department...
Shape memory alloys have found diverse applications in several engineering systems including biomed...
International audienceThis paper deals with the thermomechanical modeling of the macroscopic behavio...
Thermally induced phase transformation in NiTi shape memory alloys (SMA) shows strong size and shape...
Shape memory alloys (SMAs) are widely used in a broad variety of applications in multiscale devices ...
Polycrystalline NiTi Shape Memory Alloys (SMAs) have been experimentally shown to exhibit some impor...
Polycrystalline NiTi Shape Memory Alloys (SMAs) have been experimentally shown to exhibit some impor...
Polycrystalline NiTi Shape Memory Alloys (SMAs) have been experimentally shown to exhibit some impor...
The atomistic study shows strong size effects in thermally induced martensitic phase transformation ...
Porosity can play an important role in altering the phase transformation characteristics of NiTi sha...
Shape Memory Alloys (SMAs) undergo an austenite-martensite solid-solid phase transformation which co...
The pseudo-elasticity of Shape Memory Alloys is due to a change in volumetric fraction between the h...
In the present study, a scale-free phase-field approach (PFA) is proposed to study solid-solid phase...
AbstractMolecular dynamics simulations are performed to investigate temperature- and stress-induced ...
Shape-memory Alloys (SMAs) exhibit tremendous mechanical properties owing to their reversible phase ...
Title: Modeling of phase transformations in shape memory materials Author: Miroslav Frost Department...
Shape memory alloys have found diverse applications in several engineering systems including biomed...
International audienceThis paper deals with the thermomechanical modeling of the macroscopic behavio...
Thermally induced phase transformation in NiTi shape memory alloys (SMA) shows strong size and shape...
Shape memory alloys (SMAs) are widely used in a broad variety of applications in multiscale devices ...
Polycrystalline NiTi Shape Memory Alloys (SMAs) have been experimentally shown to exhibit some impor...
Polycrystalline NiTi Shape Memory Alloys (SMAs) have been experimentally shown to exhibit some impor...
Polycrystalline NiTi Shape Memory Alloys (SMAs) have been experimentally shown to exhibit some impor...
The atomistic study shows strong size effects in thermally induced martensitic phase transformation ...
Porosity can play an important role in altering the phase transformation characteristics of NiTi sha...
Shape Memory Alloys (SMAs) undergo an austenite-martensite solid-solid phase transformation which co...
The pseudo-elasticity of Shape Memory Alloys is due to a change in volumetric fraction between the h...
In the present study, a scale-free phase-field approach (PFA) is proposed to study solid-solid phase...
AbstractMolecular dynamics simulations are performed to investigate temperature- and stress-induced ...
Shape-memory Alloys (SMAs) exhibit tremendous mechanical properties owing to their reversible phase ...
Title: Modeling of phase transformations in shape memory materials Author: Miroslav Frost Department...
Shape memory alloys have found diverse applications in several engineering systems including biomed...
International audienceThis paper deals with the thermomechanical modeling of the macroscopic behavio...