Ni-Ti is a key shape memory alloy (SMA) system for applications, being cheap and having good mechanical properties. Recently, atomistic simulations of Ni-Ti SMAs have been used with the purpose of revealing the nano-scale mechanisms that control superelasticity and the shape memory effect, which is crucial to guide alloying or processing strategies to improve materials performance. These atomistic simulations are based on molecular dynamics modelling that relies on (empirical) interatomic potentials. These simulations must reproduce accurately the mechanism of martensitic transformation and the microstructure that it originates, since this controls both superelasticity and the shape memory effect. As demonstrated by the energy minimization ...
The influence of grain boundaries and grain misorientation on the nucleation and growth of martensit...
Porosity can play an important role in altering the phase transformation characteristics of NiTi sha...
Since its discovery, TiNi-based shape memory alloys (SMAs) have attracted much attention and have sp...
Ni-Ti is a key shape memory alloy (SMA) system for applications, being cheap and having good mechani...
Ni-Ti is a key shape memory alloy (SMA) system for applications, being cheap and having good mechani...
Ni-Ti is a key shape memory alloy (SMA) system for applications, being cheap and having good mechani...
Ni-Ti is a key shape memory alloy (SMA) system for applications, being cheap and having good mechani...
Ni-Ti is a key shape memory alloy (SMA) system for applications, being cheap and having good mechani...
Shape-memory Alloys (SMAs) exhibit tremendous mechanical properties owing to their reversible phase ...
Materials with nanoscale dimensions show mechanical and structural properties different to those at ...
We use molecular dynamics (MD) with an embedded atom model potential parameterized for NiAl to study...
Shape memory alloys (SMAs) owe their distinct properties to a diffusion less martensitic phase trans...
Shape memory materials are an important class of active materials with a wide range of applications ...
Superelasticity in shape memory alloys is an important feature for actuators and medical devices. Ho...
The atomistic study shows strong size effects in thermally induced martensitic phase transformation ...
The influence of grain boundaries and grain misorientation on the nucleation and growth of martensit...
Porosity can play an important role in altering the phase transformation characteristics of NiTi sha...
Since its discovery, TiNi-based shape memory alloys (SMAs) have attracted much attention and have sp...
Ni-Ti is a key shape memory alloy (SMA) system for applications, being cheap and having good mechani...
Ni-Ti is a key shape memory alloy (SMA) system for applications, being cheap and having good mechani...
Ni-Ti is a key shape memory alloy (SMA) system for applications, being cheap and having good mechani...
Ni-Ti is a key shape memory alloy (SMA) system for applications, being cheap and having good mechani...
Ni-Ti is a key shape memory alloy (SMA) system for applications, being cheap and having good mechani...
Shape-memory Alloys (SMAs) exhibit tremendous mechanical properties owing to their reversible phase ...
Materials with nanoscale dimensions show mechanical and structural properties different to those at ...
We use molecular dynamics (MD) with an embedded atom model potential parameterized for NiAl to study...
Shape memory alloys (SMAs) owe their distinct properties to a diffusion less martensitic phase trans...
Shape memory materials are an important class of active materials with a wide range of applications ...
Superelasticity in shape memory alloys is an important feature for actuators and medical devices. Ho...
The atomistic study shows strong size effects in thermally induced martensitic phase transformation ...
The influence of grain boundaries and grain misorientation on the nucleation and growth of martensit...
Porosity can play an important role in altering the phase transformation characteristics of NiTi sha...
Since its discovery, TiNi-based shape memory alloys (SMAs) have attracted much attention and have sp...