NiTi-based shape memory alloys are metallic materials exhibiting remarkable response to mechanical and/or thermal loading, e.g. superelasticity, pseudoplasticity or one-way shape memory effect. They can be engineered into structures of micro-size dimensions, hence, they appear promising for application in micro-electromechanical systems. For their efficient utilization, appropriate characterization is important. Due to relative simplicity, indentation represents a very standard and popular technique for basic characterization of metallic materials providing information about stiffness and hardness. Moreover, it can be used for identification of other events in the material. This study aims to verify applicability of the recently developed c...
© 2014 Elsevier Ltd. The properties of a shape memory alloy (SMA) have been shown to be highly depen...
Owing the capability of recovering large deformations through reversible phase transformation, shape...
Owing the capability of recovering large deformations through reversible phase transformation, shape...
NiTi-based shape memory alloys are metallic materials exhibiting remarkable response to mechanical a...
Interest in superelastic (and shape memory) materials continues to rise, and there is a strong incen...
The indentation response of a pseudoelastic nickel-titanium based shape memory alloy (SMA) has been ...
In the present study, a crystal plasticity finite element model has been employed to mechanically ch...
The nanoindentation technique can be employed in shape memory alloys (SMAs) to discern the transform...
The nanoindentation technique can be employed in shape memory alloys (SMAs) to discern the transform...
Near equi-atomic nickel titanium (NiTi) shape memory alloys (SMAs) are a class of materials characte...
Superelastic polycrystalline NiTi is one of the most popular "shape memory alloy"(SMA) in the world,...
Superelasticity in shape memory alloys is an important feature for actuators and medical devices. Ho...
The continuous measurement of loads and displacements during nanoindentation of shape memory alloys ...
An experimental study on the indentation hardness of NiTi shape memory alloys (SMAs) by using a sphe...
Shape memory alloys (SMA) can recover large inelas-tic strains, up to 8 % tensile strain for NiTi al...
© 2014 Elsevier Ltd. The properties of a shape memory alloy (SMA) have been shown to be highly depen...
Owing the capability of recovering large deformations through reversible phase transformation, shape...
Owing the capability of recovering large deformations through reversible phase transformation, shape...
NiTi-based shape memory alloys are metallic materials exhibiting remarkable response to mechanical a...
Interest in superelastic (and shape memory) materials continues to rise, and there is a strong incen...
The indentation response of a pseudoelastic nickel-titanium based shape memory alloy (SMA) has been ...
In the present study, a crystal plasticity finite element model has been employed to mechanically ch...
The nanoindentation technique can be employed in shape memory alloys (SMAs) to discern the transform...
The nanoindentation technique can be employed in shape memory alloys (SMAs) to discern the transform...
Near equi-atomic nickel titanium (NiTi) shape memory alloys (SMAs) are a class of materials characte...
Superelastic polycrystalline NiTi is one of the most popular "shape memory alloy"(SMA) in the world,...
Superelasticity in shape memory alloys is an important feature for actuators and medical devices. Ho...
The continuous measurement of loads and displacements during nanoindentation of shape memory alloys ...
An experimental study on the indentation hardness of NiTi shape memory alloys (SMAs) by using a sphe...
Shape memory alloys (SMA) can recover large inelas-tic strains, up to 8 % tensile strain for NiTi al...
© 2014 Elsevier Ltd. The properties of a shape memory alloy (SMA) have been shown to be highly depen...
Owing the capability of recovering large deformations through reversible phase transformation, shape...
Owing the capability of recovering large deformations through reversible phase transformation, shape...