Numerical modeling of microstructure evolution in various regions during uniaxial compression and canning compression of NiTi shape memory alloy (SMA) are studied through combined macroscopic and microscopic finite element simulation in order to investigate plastic deformation of NiTi SMA at 400 °C. In this approach, the macroscale material behavior is modeled with a relatively coarse finite element mesh, and then the corresponding deformation history in some selected regions in this mesh is extracted by the sub-model technique of finite element code ABAQUS and subsequently used as boundary conditions for the microscale simulation by means of crystal plasticity finite element method (CPFEM). Simulation results show that NiTi SMA exhibits an...
The effects of microstructure and its evolution on the macroscopic superelastic stress-strain respon...
Shape memory alloys (SMAs) are materials that show reversible, thermo-elastic, diffusionless, displa...
ABSTRACT: The effects of microstructure and its evolution on the macroscopic superelastic stress-str...
Numerical modeling of microstructure evolution in various regions during uniaxial compression and ca...
Texture evolution of NiTi shape memory alloy was investigated during uniaxial compression deformatio...
A coupled macro-meso-scale numerical simulation is applied to investigate the friction effect on tex...
Shape memory alloys (SMAs) are widely used in a broad variety of applications in multiscale devices ...
Shape memory alloys have found diverse applications in several engineering systems including biomed...
ii The thermo-mechanical response of NiTi shape memory alloys (SMAs) is predominantly dictated by tw...
Deformation behavior and microstructure evolution of NiTiCu shape memory alloy (SMA), which possesse...
In order to actually describe the mechanical behavior of phase transformation and plasticity for NiT...
In the present study, a scale-free phase-field approach (PFA) is proposed to study solid-solid phase...
Previous experimental observations have shown that the pseudoelastic response of NiTi shape memory a...
The financial support via project No. GA18-03834S provided by the Czech Science Foundation is acknow...
The effects of microstructure and its evolution on the macroscopic superelastic stress-strain respon...
The effects of microstructure and its evolution on the macroscopic superelastic stress-strain respon...
Shape memory alloys (SMAs) are materials that show reversible, thermo-elastic, diffusionless, displa...
ABSTRACT: The effects of microstructure and its evolution on the macroscopic superelastic stress-str...
Numerical modeling of microstructure evolution in various regions during uniaxial compression and ca...
Texture evolution of NiTi shape memory alloy was investigated during uniaxial compression deformatio...
A coupled macro-meso-scale numerical simulation is applied to investigate the friction effect on tex...
Shape memory alloys (SMAs) are widely used in a broad variety of applications in multiscale devices ...
Shape memory alloys have found diverse applications in several engineering systems including biomed...
ii The thermo-mechanical response of NiTi shape memory alloys (SMAs) is predominantly dictated by tw...
Deformation behavior and microstructure evolution of NiTiCu shape memory alloy (SMA), which possesse...
In order to actually describe the mechanical behavior of phase transformation and plasticity for NiT...
In the present study, a scale-free phase-field approach (PFA) is proposed to study solid-solid phase...
Previous experimental observations have shown that the pseudoelastic response of NiTi shape memory a...
The financial support via project No. GA18-03834S provided by the Czech Science Foundation is acknow...
The effects of microstructure and its evolution on the macroscopic superelastic stress-strain respon...
The effects of microstructure and its evolution on the macroscopic superelastic stress-strain respon...
Shape memory alloys (SMAs) are materials that show reversible, thermo-elastic, diffusionless, displa...
ABSTRACT: The effects of microstructure and its evolution on the macroscopic superelastic stress-str...