Most of the models for the macroscopic behaviour of shape memory alloys (SMA) rely upon the assumption of equal material properties of the phases while, on the contrary, experiments show significant differences. On the basis of the variational formulation of the problem governing the behaviour of a linear elastic heterogeneous material with prescribed eigenstrains, macroscopic free energies for SMA are defined taking into account the phase heterogeneity. The general structure and the dependence on the macroscopic state variables of such functions are discussed and formal expressions in terms of proper concentration tensors given. In the case of an underlying two-phase microstructure exact connections between the quantities that determine th...
We consider a singularly-perturbed two-well problem in the context of planar geometrically linear el...
We study a macroscopic homogenized model of shape memory alloys. Starting from the Souza-Auricchio m...
The homogenized energy model (HEM) is a unified framework for modeling hysteresis in ferroelectric, ...
The interaction energy is a fundamental ingredient in the modeling of Shape Memory Alloys (SMA) and ...
The interaction energy is a fundamental ingredient in the modeling of the macroscopic behavior of sh...
Shape Memory AlloysInternational audienceIn this study, a phenomenological model describing superela...
AbstractIn microplane theory, it is assumed that a macroscopic stress tensor is projected to the mic...
A macroscopic model of the behaviour of polycrystalline SMA is build to be implemented into a finite...
Shape Memory Alloys (SMA) exhibit a complex thermomechanical behavior induced by the occurrence of p...
A one-dimensional model for a shape memory alloy is proposed. It provides a simplied description of ...
International audienceWe present an estimate for the effective energy of polycrystalline shape memor...
A Ginzburg–Landau model for the macroscopic behaviour of a shape memory alloy is proposed. The model...
Shape Memory Alloys (SMAs) undergo an austenite-martensite solid-solid phase transformation which co...
Modelling shape memory alloys is based on choosing state quantities E which involve the phase volume...
The amazing shape memory property of shape memory alloys (SMAs) attracted the attention of many scie...
We consider a singularly-perturbed two-well problem in the context of planar geometrically linear el...
We study a macroscopic homogenized model of shape memory alloys. Starting from the Souza-Auricchio m...
The homogenized energy model (HEM) is a unified framework for modeling hysteresis in ferroelectric, ...
The interaction energy is a fundamental ingredient in the modeling of Shape Memory Alloys (SMA) and ...
The interaction energy is a fundamental ingredient in the modeling of the macroscopic behavior of sh...
Shape Memory AlloysInternational audienceIn this study, a phenomenological model describing superela...
AbstractIn microplane theory, it is assumed that a macroscopic stress tensor is projected to the mic...
A macroscopic model of the behaviour of polycrystalline SMA is build to be implemented into a finite...
Shape Memory Alloys (SMA) exhibit a complex thermomechanical behavior induced by the occurrence of p...
A one-dimensional model for a shape memory alloy is proposed. It provides a simplied description of ...
International audienceWe present an estimate for the effective energy of polycrystalline shape memor...
A Ginzburg–Landau model for the macroscopic behaviour of a shape memory alloy is proposed. The model...
Shape Memory Alloys (SMAs) undergo an austenite-martensite solid-solid phase transformation which co...
Modelling shape memory alloys is based on choosing state quantities E which involve the phase volume...
The amazing shape memory property of shape memory alloys (SMAs) attracted the attention of many scie...
We consider a singularly-perturbed two-well problem in the context of planar geometrically linear el...
We study a macroscopic homogenized model of shape memory alloys. Starting from the Souza-Auricchio m...
The homogenized energy model (HEM) is a unified framework for modeling hysteresis in ferroelectric, ...