A constitutive thermomechanical model for the behavior of shape memory alloys is presented. It takes into account the martensitic phase transformation, the orientation of martensite variants and the inelastic accommodation of twins inside self-accommodated martensite. A thermodynamical potential is built using three internal variables described at macroscopic scale. Driving forces are derived from this potential and the equilibrium is reached by considering dissipative phenomena. The model is then implemented into a finite element code in order to design two or three-dimensional structures. It was adopted as a fundamental for a non-local description of the superelastic behavior in order to take into account the localization phenomenon obser...
AbstractHere, the effects of localization and propagation of martensitic phase transformation on the...
International audienceHere, the effects of localization and propagation of martensitic phase transfo...
International audienceHere, the effects of localization and propagation of martensitic phase transfo...
Un modèle de comportement thermomécanique pour les alliages à mémoire de forme est présenté. Il pren...
Un modèle de comportement thermomécanique pour les alliages à mémoire de forme est présenté. Il pren...
The range of Shape Memory Alloys offers a variety of mechanical behaviour: shape memory effect, supe...
The range of Shape Memory Alloys offers a variety of mechanical behaviour: shape memory effect, supe...
Shape Memory AlloysInternational audienceIn this study, a phenomenological model describing superela...
Shape Memory Alloys (SMA) exhibit a complex thermomechanical behavior induced by the occurrence of p...
The superelasticity of the Shape Memory Alloys (SMA) is well known nowadays, but few models describe...
In this Phd thesis, thermo-mechanical models based on a nonlocal approach are proposed in order to d...
It is well known that Shape Memory Alloys (SMA) are a particular class of materials that can recover...
Proceedings of the International Conference on Martensitic TransformationsInternational audienceAn S...
Shape memory alloys (SMA) present a superthermoelastic behavior, i.e. they are able to be strained o...
Shape memory alloys (SMA) present a superthermoelastic behavior, i.e. they are able to be strained o...
AbstractHere, the effects of localization and propagation of martensitic phase transformation on the...
International audienceHere, the effects of localization and propagation of martensitic phase transfo...
International audienceHere, the effects of localization and propagation of martensitic phase transfo...
Un modèle de comportement thermomécanique pour les alliages à mémoire de forme est présenté. Il pren...
Un modèle de comportement thermomécanique pour les alliages à mémoire de forme est présenté. Il pren...
The range of Shape Memory Alloys offers a variety of mechanical behaviour: shape memory effect, supe...
The range of Shape Memory Alloys offers a variety of mechanical behaviour: shape memory effect, supe...
Shape Memory AlloysInternational audienceIn this study, a phenomenological model describing superela...
Shape Memory Alloys (SMA) exhibit a complex thermomechanical behavior induced by the occurrence of p...
The superelasticity of the Shape Memory Alloys (SMA) is well known nowadays, but few models describe...
In this Phd thesis, thermo-mechanical models based on a nonlocal approach are proposed in order to d...
It is well known that Shape Memory Alloys (SMA) are a particular class of materials that can recover...
Proceedings of the International Conference on Martensitic TransformationsInternational audienceAn S...
Shape memory alloys (SMA) present a superthermoelastic behavior, i.e. they are able to be strained o...
Shape memory alloys (SMA) present a superthermoelastic behavior, i.e. they are able to be strained o...
AbstractHere, the effects of localization and propagation of martensitic phase transformation on the...
International audienceHere, the effects of localization and propagation of martensitic phase transfo...
International audienceHere, the effects of localization and propagation of martensitic phase transfo...