Evolution of the electrical resistivity during thermal and mechanical tests of NiTi wires showing R-phase transformation was investigated by experiments and micromechanical model simulations considering B2-R-B19� transformations. Since reasonable agreement between the simulated and experimental mechanical and electrical resistivity responses was achieved, the apparently curious behavior of electrical resistivity could be rationalized through the model simulations in terms of the activity of multiple transformation and deformation processes taking place in the activated NiTi wires
International audienceThe present research proposes a micromechanical model for shape memory alloy w...
Constitutive behavior of engineering materials is typically characterized by stress–strain curves fr...
The electrical resistivity (ER) of Flexinol nickel-titanium shape memory alloys (SMA) has been measu...
Evolution of the electrical resistivity during thermal and mechanical tests of NiTi wires showing R-...
International audienceAbstract The well-known martensitic transformation is the main feature for alm...
Mechanical properties of shape memory NiTi alloys have been widely investigated : though a reasonabl...
In recent years, the electric transport properties of NiTi and NiTiCu alloys under applied stress ha...
The electric resistance, sensitively dependent on the electronic structure and currently used to det...
A mechanical model for pseudoelastic behavior of NiTi wires is proposed with the aim to predict the ...
A mechanical model for pseudoelastic behavior of NiTi wires is proposed with the aim to predict the ...
Shape memory alloys belong to the group of intelligent materials due to their exceptional properties...
A simple one-dimensional rate-independent model is proposed. It is able to capture responses of a Ni...
International audienceNiTi shape memory alloys (SMAs) wires exhibit R-phase frequently. This interme...
The modern industrial and consumer applications in accordance with the concepts of Industry 4.0 and ...
From experimental evidence it has been possible to conclude that the strain rate has a great effect ...
International audienceThe present research proposes a micromechanical model for shape memory alloy w...
Constitutive behavior of engineering materials is typically characterized by stress–strain curves fr...
The electrical resistivity (ER) of Flexinol nickel-titanium shape memory alloys (SMA) has been measu...
Evolution of the electrical resistivity during thermal and mechanical tests of NiTi wires showing R-...
International audienceAbstract The well-known martensitic transformation is the main feature for alm...
Mechanical properties of shape memory NiTi alloys have been widely investigated : though a reasonabl...
In recent years, the electric transport properties of NiTi and NiTiCu alloys under applied stress ha...
The electric resistance, sensitively dependent on the electronic structure and currently used to det...
A mechanical model for pseudoelastic behavior of NiTi wires is proposed with the aim to predict the ...
A mechanical model for pseudoelastic behavior of NiTi wires is proposed with the aim to predict the ...
Shape memory alloys belong to the group of intelligent materials due to their exceptional properties...
A simple one-dimensional rate-independent model is proposed. It is able to capture responses of a Ni...
International audienceNiTi shape memory alloys (SMAs) wires exhibit R-phase frequently. This interme...
The modern industrial and consumer applications in accordance with the concepts of Industry 4.0 and ...
From experimental evidence it has been possible to conclude that the strain rate has a great effect ...
International audienceThe present research proposes a micromechanical model for shape memory alloy w...
Constitutive behavior of engineering materials is typically characterized by stress–strain curves fr...
The electrical resistivity (ER) of Flexinol nickel-titanium shape memory alloys (SMA) has been measu...