To explore an effective route of customizing the superelasticity (SE) of NiTi shape memory alloys via modifying the grain structure, binary Ni55Ti45 (wt) alloys were fabricated in as-cast, hot swaged, and hot-rolled conditions, presenting contrasting grain sizes and grain boundary types. In situ synchrotron X-ray Laue microdiffraction and in situ synchrotron X-ray powder diffraction techniques were employed to unravel the underlying grain structure mechanisms that cause the diversity of SE performance among the three materials. The evolution of lattice rotation, strain field, and phase transformation has been revealed at the micro-and mesoscale, and the effect of grain structure on SE performance has been quantified. It was found that (i) t...
NiTi is a shape memory alloy and can undergo crystallographically reversible martensitic transformat...
NiTi is a shape memory alloy and can undergo crystallographically reversible martensitic transformat...
NiTi is a shape memory alloy and can undergo crystallographically reversible martensitic transformat...
To explore an effective route of customizing the superelasticity (SE) of NiTi shape memory alloys vi...
The cyclic instability in shape memory characteristics of NiTi-based shape memory alloys (SMAs), suc...
Due to unique features, like shape memory effects and superelasticity, NiTi alloys with nearly equia...
The cyclic instability in shape memory characteristics of NiTi-based shape memory alloys (SMAs), suc...
Shape memory and superelastic applications of NiTi based alloys have typically been limited to near ...
Shape memory and superelastic applications of NiTi based alloys have typically been limited to near ...
In this study, Thermomechanical properties of Ti-50.8 and 50.7 at% Ni alloy severely deformed using ...
NiTi shape memory alloys (SMAs) are increasingly used in many engineering and medical applications, ...
NiTi shape memory alloys (SMAs) are increasingly used in many engineering and medical applications, ...
Shape memory alloys (SMAs) are a class of metallic alloys with the ability to recover large mechanic...
Martensitic phase transformation and plasticity are two primary mechanisms of deformation in shape m...
Microstructural elements in NiTi shape memory alloys (SMAs) e precipitates, phase boundaries, inclus...
NiTi is a shape memory alloy and can undergo crystallographically reversible martensitic transformat...
NiTi is a shape memory alloy and can undergo crystallographically reversible martensitic transformat...
NiTi is a shape memory alloy and can undergo crystallographically reversible martensitic transformat...
To explore an effective route of customizing the superelasticity (SE) of NiTi shape memory alloys vi...
The cyclic instability in shape memory characteristics of NiTi-based shape memory alloys (SMAs), suc...
Due to unique features, like shape memory effects and superelasticity, NiTi alloys with nearly equia...
The cyclic instability in shape memory characteristics of NiTi-based shape memory alloys (SMAs), suc...
Shape memory and superelastic applications of NiTi based alloys have typically been limited to near ...
Shape memory and superelastic applications of NiTi based alloys have typically been limited to near ...
In this study, Thermomechanical properties of Ti-50.8 and 50.7 at% Ni alloy severely deformed using ...
NiTi shape memory alloys (SMAs) are increasingly used in many engineering and medical applications, ...
NiTi shape memory alloys (SMAs) are increasingly used in many engineering and medical applications, ...
Shape memory alloys (SMAs) are a class of metallic alloys with the ability to recover large mechanic...
Martensitic phase transformation and plasticity are two primary mechanisms of deformation in shape m...
Microstructural elements in NiTi shape memory alloys (SMAs) e precipitates, phase boundaries, inclus...
NiTi is a shape memory alloy and can undergo crystallographically reversible martensitic transformat...
NiTi is a shape memory alloy and can undergo crystallographically reversible martensitic transformat...
NiTi is a shape memory alloy and can undergo crystallographically reversible martensitic transformat...