An experimental study on the indentation hardness of NiTi shape memory alloys (SMAs) by using a spherical indenter tip and a finite element investigation to understand the experimental results are presented in this paper. It is shown that the spherical indentation hardness of NiTi SMAs increases with the indentation depth. The finding is contrary to the recent study on the hardness of NiTi SMAs using a sharp Berkovich indenter tip, where the interfacial energy plays a dominant role at small indentation depths. Our numerical investigation indicates that the influence of the interfacial energy is not significant on the spherical indentation hardness of SMAs. Furthermore, the depth dependency of SMA hardness under a spherical indenter is explained...
The mechanical properties of sputter-deposited NiTi shape memory alloy thin films ranging in thickne...
Spherical indentation of superelastic shape memory alloys (SMAs) has been theoretically analyzed. Tw...
Dimensional analysis and the finite element method are applied in this paper to study spherical inde...
An experimental study on the indentation hardness of NiTi shape memory alloys (SMAs) by using a sphe...
Due to a distinct nature of thermomechanical smart materials' reaction to applied loads, a revolutio...
We conducted the measurement of the hardness-depth relationship of NiTi shape memory alloy with a sh...
Using dimensional analysis and the finite element method, the spherical indentation hardness of shap...
In the present study, dimensional analysis and the finite element method are applied to study the ha...
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...
In this paper the influence of contact geometry, including the round tip of the indenter and the rou...
The mechanical response of spherical indentation of superelastic shape memory alloys (SMAs) was theo...
Instrumented nanoindentation was employed to study the depth dependence of nanohardness in a CuAlNi ...
The nanoindentation technique can be employed in shape memory alloys (SMAs) to discern the transform...
Owing the capability of recovering large deformations through reversible phase transformation, shape...
The mechanical properties of sputter-deposited NiTi shape memory alloy thin films ranging in thickne...
Spherical indentation of superelastic shape memory alloys (SMAs) has been theoretically analyzed. Tw...
Dimensional analysis and the finite element method are applied in this paper to study spherical inde...
An experimental study on the indentation hardness of NiTi shape memory alloys (SMAs) by using a sphe...
Due to a distinct nature of thermomechanical smart materials' reaction to applied loads, a revolutio...
We conducted the measurement of the hardness-depth relationship of NiTi shape memory alloy with a sh...
Using dimensional analysis and the finite element method, the spherical indentation hardness of shap...
In the present study, dimensional analysis and the finite element method are applied to study the ha...
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...
In this paper the influence of contact geometry, including the round tip of the indenter and the rou...
The mechanical response of spherical indentation of superelastic shape memory alloys (SMAs) was theo...
Instrumented nanoindentation was employed to study the depth dependence of nanohardness in a CuAlNi ...
The nanoindentation technique can be employed in shape memory alloys (SMAs) to discern the transform...
Owing the capability of recovering large deformations through reversible phase transformation, shape...
The mechanical properties of sputter-deposited NiTi shape memory alloy thin films ranging in thickne...
Spherical indentation of superelastic shape memory alloys (SMAs) has been theoretically analyzed. Tw...
Dimensional analysis and the finite element method are applied in this paper to study spherical inde...