Shape memory alloys are a special class of metals that can undergo large deformation yet still be able to recover their original shape through the mechanism of phase transformations. However, when they experience plastic slip, their ability to recover their original shape is reduced. This is due to the presence of dislocations generated by plastic flow that interfere with shape recovery through the shape memory effect and the superelastic effect. A one-dimensional model that captures the coupling between shape memory effect, the superelastic effect and plastic deformation is introduced. The shape memory alloy is assumed to have only 3 phases: austenite, positive variant martensite and negative variant martensite. If the SMA flows plasticall...
The one-way and two-way shape memory effects (SMEs) as well as the thermal hysteresis represent fund...
The one-way and two-way shape memory effects (SMEs) as well as the thermal hysteresis represent fund...
Instrumented indentation is particularly useful for characterizing the mechanical behavior of shape ...
Shape memory alloys are a special class of metals that can undergo large deformation yet still be ab...
This study is focused on the superelastic Ni-based shape memory alloy (SMA) for finite-element appli...
Shape Memory Alloys (SMA) exhibit a complex thermomechanical behavior induced by the occurrence of p...
Stimulated by recent experimental results on superelastic NiTi shape memory alloy, a theoretical stu...
The specific behavior of Shape Memory Alloys (SMA) is due to a solid-solid transformation called mar...
International audienceThis two-part paper reviews the latest developments in the modeling of shape m...
The novel nonlinear thermoelastic behavior of shape-memory alloys (SMAs) makes them increasingly des...
International audienceThis two-part paper reviews the latest developments in the modeling of shape m...
AbstractIn the present work we propose a new thermomechanically coupled material model for shape mem...
International audienceThis two-part paper reviews the latest developments in the modeling of shape m...
International audienceThis two-part paper reviews the latest developments in the modeling of shape m...
Many models have been developed for simulation of shape memory alloy (SMA) constitutive responses. T...
The one-way and two-way shape memory effects (SMEs) as well as the thermal hysteresis represent fund...
The one-way and two-way shape memory effects (SMEs) as well as the thermal hysteresis represent fund...
Instrumented indentation is particularly useful for characterizing the mechanical behavior of shape ...
Shape memory alloys are a special class of metals that can undergo large deformation yet still be ab...
This study is focused on the superelastic Ni-based shape memory alloy (SMA) for finite-element appli...
Shape Memory Alloys (SMA) exhibit a complex thermomechanical behavior induced by the occurrence of p...
Stimulated by recent experimental results on superelastic NiTi shape memory alloy, a theoretical stu...
The specific behavior of Shape Memory Alloys (SMA) is due to a solid-solid transformation called mar...
International audienceThis two-part paper reviews the latest developments in the modeling of shape m...
The novel nonlinear thermoelastic behavior of shape-memory alloys (SMAs) makes them increasingly des...
International audienceThis two-part paper reviews the latest developments in the modeling of shape m...
AbstractIn the present work we propose a new thermomechanically coupled material model for shape mem...
International audienceThis two-part paper reviews the latest developments in the modeling of shape m...
International audienceThis two-part paper reviews the latest developments in the modeling of shape m...
Many models have been developed for simulation of shape memory alloy (SMA) constitutive responses. T...
The one-way and two-way shape memory effects (SMEs) as well as the thermal hysteresis represent fund...
The one-way and two-way shape memory effects (SMEs) as well as the thermal hysteresis represent fund...
Instrumented indentation is particularly useful for characterizing the mechanical behavior of shape ...