Due to a distinct nature of thermomechanical smart materials' reaction to applied loads, a revolutionary approach is needed to measure the hardness and to understand its size effect for pseudoelastic NiTi shape memory alloys (SMAs) during the solid-state phase transition. Spherical hardness is increased with depths during the phase transition in NiTi SMAs. This behaviour is contrary to the decrease in the hardness of NiTi SMAs with depths using sharp tips and the depth-insensitive hardness of traditional metallic alloys using spherical tips. In contrast with the common dislocation theory for the hardness measurement, the nature of NiTi SMAs' hardness is explained by the balance between the interface and the bulk energy of phase transformed ...
ABSTRACT: This paper starts with a brief introduction to bulk nanostructured materials. Bulk nanocry...
Hysteresis energy decreased significantly as nanocrystalline NiTi shape memory alloy was under trian...
We examined the effect of loading rate on maximum nanoindentation depth for nano-grained superelasti...
We conducted the measurement of the hardness-depth relationship of NiTi shape memory alloy with a sh...
An experimental study on the indentation hardness of NiTi shape memory alloys (SMAs) by using a sphe...
The excellent microwear performance of nano-grained superelastic nickel titanium (NiTi) polycrystall...
We present a second nearest-neighbor interatomic potential improved with the mechanical properties o...
There is a need to clarify the phase transition nucleation and propagation phenomena in a polycrysta...
The recent increased use of shape memory alloys (SMAs) for engineering applications manifests the n...
NiTi-based shape memory alloys are metallic materials exhibiting remarkable response to mechanical a...
NiTi-based shape memory alloys are metallic materials exhibiting remarkable response to mechanical a...
The recent increased use of shape memory alloys (SMAs) for engineering applications manifests the ne...
The recent increased use of shape memory alloys (SMAs) for engineering applications manifests the ne...
Hysteresis energy decreased significantly as nanocrystalline NiTi shape memory alloy was under trian...
Shape memory alloys (SMAs) can handle large deformations through martensitic phase transformation an...
ABSTRACT: This paper starts with a brief introduction to bulk nanostructured materials. Bulk nanocry...
Hysteresis energy decreased significantly as nanocrystalline NiTi shape memory alloy was under trian...
We examined the effect of loading rate on maximum nanoindentation depth for nano-grained superelasti...
We conducted the measurement of the hardness-depth relationship of NiTi shape memory alloy with a sh...
An experimental study on the indentation hardness of NiTi shape memory alloys (SMAs) by using a sphe...
The excellent microwear performance of nano-grained superelastic nickel titanium (NiTi) polycrystall...
We present a second nearest-neighbor interatomic potential improved with the mechanical properties o...
There is a need to clarify the phase transition nucleation and propagation phenomena in a polycrysta...
The recent increased use of shape memory alloys (SMAs) for engineering applications manifests the n...
NiTi-based shape memory alloys are metallic materials exhibiting remarkable response to mechanical a...
NiTi-based shape memory alloys are metallic materials exhibiting remarkable response to mechanical a...
The recent increased use of shape memory alloys (SMAs) for engineering applications manifests the ne...
The recent increased use of shape memory alloys (SMAs) for engineering applications manifests the ne...
Hysteresis energy decreased significantly as nanocrystalline NiTi shape memory alloy was under trian...
Shape memory alloys (SMAs) can handle large deformations through martensitic phase transformation an...
ABSTRACT: This paper starts with a brief introduction to bulk nanostructured materials. Bulk nanocry...
Hysteresis energy decreased significantly as nanocrystalline NiTi shape memory alloy was under trian...
We examined the effect of loading rate on maximum nanoindentation depth for nano-grained superelasti...