Superelasticity in shape memory alloys is an important feature for actuators and medical devices. However, the function of the devices is typically limited by mechanical bandwidth and fatigue, which are dominated by the microstructures. Thus, in order to correlate the mechanical response and the microstructures, the microstructural evolution in NiTi single crystals under the compression, tensile, and shearing tests is simulated by molecular dynamics (MD) in the current study. Then, the martensite variant identification method, which identifies the crystal variants/phases of each lattice based on the transformation matrix, is used to post-process the MD results. The results with the detailed information of variants and phases reveal many fea...
The presence of nano-sized coherent precipitates is well known to have crucial impact on the mechani...
The presence of nano-sized coherent precipitates is well known to have crucial impact on the mechani...
Shape memory alloys (SMAs) are widely used in a broad variety of applications in multiscale devices ...
Pseudoelasticity in NiTi shape memory alloy single crystals depends on the loading direction. Here, ...
Understanding the effect of crystallographic orientation on the twinnin/detwinning mechanisms in NiT...
NiTi-based shape memory alloys are metallic materials exhibiting remarkable response to mechanical a...
Superelastic polycrystalline NiTi is one of the most popular "shape memory alloy"(SMA) in the world,...
Shape memory alloys are known to exhibit a range of novel thermomechanical behaviour associated with...
Shape memory alloys are known to exhibit a range of novel thermomechanical behaviour associated with...
Shape memory alloy has been attracting because of its unique characteristics such as the shape memor...
In the present study, a scale-free phase-field approach (PFA) is proposed to study solid-solid phase...
The influence of grain boundaries and grain misorientation on the nucleation and growth of martensit...
The influence of grain boundaries and grain misorientation on the nucleation and growth of martensit...
Owing to its importance in understanding the mechanical and thermomechanical behaviours of shape mem...
The presence of nano-sized coherent precipitates is well known to have crucial impact on the mechani...
The presence of nano-sized coherent precipitates is well known to have crucial impact on the mechani...
The presence of nano-sized coherent precipitates is well known to have crucial impact on the mechani...
Shape memory alloys (SMAs) are widely used in a broad variety of applications in multiscale devices ...
Pseudoelasticity in NiTi shape memory alloy single crystals depends on the loading direction. Here, ...
Understanding the effect of crystallographic orientation on the twinnin/detwinning mechanisms in NiT...
NiTi-based shape memory alloys are metallic materials exhibiting remarkable response to mechanical a...
Superelastic polycrystalline NiTi is one of the most popular "shape memory alloy"(SMA) in the world,...
Shape memory alloys are known to exhibit a range of novel thermomechanical behaviour associated with...
Shape memory alloys are known to exhibit a range of novel thermomechanical behaviour associated with...
Shape memory alloy has been attracting because of its unique characteristics such as the shape memor...
In the present study, a scale-free phase-field approach (PFA) is proposed to study solid-solid phase...
The influence of grain boundaries and grain misorientation on the nucleation and growth of martensit...
The influence of grain boundaries and grain misorientation on the nucleation and growth of martensit...
Owing to its importance in understanding the mechanical and thermomechanical behaviours of shape mem...
The presence of nano-sized coherent precipitates is well known to have crucial impact on the mechani...
The presence of nano-sized coherent precipitates is well known to have crucial impact on the mechani...
The presence of nano-sized coherent precipitates is well known to have crucial impact on the mechani...
Shape memory alloys (SMAs) are widely used in a broad variety of applications in multiscale devices ...