The atomistic study shows strong size effects in thermally induced martensitic phase transformation evolution kinetics of equiatomic NiTi shape memory alloys (SMAs). It is shown that size effects are closely related to the presence of free surfaces; thus, NiTi thin films and nanopillars are studied. Quasi-static molecular dynamics simulations for several cell sizes at various (constant) temperatures are performed by employing well-established interatomic potentials for NiTi. The study shows that size plays a crucial role in the evolution of martensite phase fraction and, importantly, can significantly change the phase transformation temperatures, which can be used for the design of NiTi based sensors, actuators, or devices at nano- to micro...
The reverse martensitic (“austenitic”) transformation upon heating of equiatomic nickel-ti...
We present a second nearest-neighbor interatomic potential improved with the mechanical properties o...
Ni-Ti is a key shape memory alloy (SMA) system for applications, being cheap and having good mechani...
Thermally induced phase transformation in NiTi shape memory alloys (SMA) shows strong size and shape...
Martensitic transformations in nanoscaled shape-memory alloys exhibit characteristic features absent...
We use density functional theory to characterize how size affects the relative stability of thin NiT...
Materials with nanoscale dimensions show mechanical and structural properties different to those at ...
Porosity can play an important role in altering the phase transformation characteristics of NiTi sha...
Shape memory alloys (SMAs) are materials that show reversible, thermo-elastic, diffusionless, displa...
Shape memory alloys (SMAs) owe their distinct properties to a diffusion less martensitic phase trans...
AbstractMolecular dynamics simulations are performed to investigate temperature- and stress-induced ...
Shape-memory (SM) alloys can, after initial inelastic deformation, reconstruct their prist...
Shape-memory Alloys (SMAs) exhibit tremendous mechanical properties owing to their reversible phase ...
Shape memory alloys (SMAs) are widely used in a broad variety of applications in multiscale devices ...
We use molecular dynamics (MD) with an embedded atom model potential parameterized for NiAl to study...
The reverse martensitic (“austenitic”) transformation upon heating of equiatomic nickel-ti...
We present a second nearest-neighbor interatomic potential improved with the mechanical properties o...
Ni-Ti is a key shape memory alloy (SMA) system for applications, being cheap and having good mechani...
Thermally induced phase transformation in NiTi shape memory alloys (SMA) shows strong size and shape...
Martensitic transformations in nanoscaled shape-memory alloys exhibit characteristic features absent...
We use density functional theory to characterize how size affects the relative stability of thin NiT...
Materials with nanoscale dimensions show mechanical and structural properties different to those at ...
Porosity can play an important role in altering the phase transformation characteristics of NiTi sha...
Shape memory alloys (SMAs) are materials that show reversible, thermo-elastic, diffusionless, displa...
Shape memory alloys (SMAs) owe their distinct properties to a diffusion less martensitic phase trans...
AbstractMolecular dynamics simulations are performed to investigate temperature- and stress-induced ...
Shape-memory (SM) alloys can, after initial inelastic deformation, reconstruct their prist...
Shape-memory Alloys (SMAs) exhibit tremendous mechanical properties owing to their reversible phase ...
Shape memory alloys (SMAs) are widely used in a broad variety of applications in multiscale devices ...
We use molecular dynamics (MD) with an embedded atom model potential parameterized for NiAl to study...
The reverse martensitic (“austenitic”) transformation upon heating of equiatomic nickel-ti...
We present a second nearest-neighbor interatomic potential improved with the mechanical properties o...
Ni-Ti is a key shape memory alloy (SMA) system for applications, being cheap and having good mechani...