In this work, we have developed a mathematical framework to investigate the deformation response under Berkovich and spherical indenters. Nanoindentation experiments are carried out on two single-crystal magnesium (Mg) samples oriented for basal slip and tensile twinning. The indentation load vs penetration depth curves are then analyzed to explain the pop-in events with the help of Schmid factor analysis and to identify the favorable deformation modes directly beneath and around the indentation. These results explain why there is only a small difference in the values of hardness between the two orientations despite having a significant difference in their crystallographic orientations. In addition to this, the role of indenter tip radius o...
An SEM in situ uniaxial tensile testing setup allowing HR-EBSD acquisition during deformation was us...
Magnesium alloys, owing to their low density and high specific strength, are potential candidates fo...
Magnesium (Mg) is the lightest structural metal in the world. Therefore, Mg alloys hold great promis...
The effect of crystal orientation on nanoindentation behavior at both quasi-static and high strain r...
Uniaxial compression experiments were conducted on two magnesium (Mg) single crystals whose crystall...
The residual mechanical properties acquired from shock-compressed solids are often times dramaticall...
The dependences of various nanoindentation parameters, such as depth of penetration d, indentation d...
In order to understand a plastic deformation behavior of pure Mg and Mg-Y alloy single-crystals unde...
The formation of anomalous indentations, with two opposite faces describing a pin-cushion effect and...
We analyse spherical nanoindentation of single crystal copper using two different indenter tips of r...
Magnesium is an excellent candidate as lightweight structural material, but has strong plastic aniso...
The influence of grain boundaries on plastic deformation was studied by carrying out nanoindentation...
XA combined experimental and computational investigation of the deformation behavior of pure magnesi...
Thesis (Ph. D.)--University of Rochester. Dept. of Mechanical Engineering, 2008.Due to the nature of...
In this study, molecular dynamics simulations were performed to study the uniaxial compression defor...
An SEM in situ uniaxial tensile testing setup allowing HR-EBSD acquisition during deformation was us...
Magnesium alloys, owing to their low density and high specific strength, are potential candidates fo...
Magnesium (Mg) is the lightest structural metal in the world. Therefore, Mg alloys hold great promis...
The effect of crystal orientation on nanoindentation behavior at both quasi-static and high strain r...
Uniaxial compression experiments were conducted on two magnesium (Mg) single crystals whose crystall...
The residual mechanical properties acquired from shock-compressed solids are often times dramaticall...
The dependences of various nanoindentation parameters, such as depth of penetration d, indentation d...
In order to understand a plastic deformation behavior of pure Mg and Mg-Y alloy single-crystals unde...
The formation of anomalous indentations, with two opposite faces describing a pin-cushion effect and...
We analyse spherical nanoindentation of single crystal copper using two different indenter tips of r...
Magnesium is an excellent candidate as lightweight structural material, but has strong plastic aniso...
The influence of grain boundaries on plastic deformation was studied by carrying out nanoindentation...
XA combined experimental and computational investigation of the deformation behavior of pure magnesi...
Thesis (Ph. D.)--University of Rochester. Dept. of Mechanical Engineering, 2008.Due to the nature of...
In this study, molecular dynamics simulations were performed to study the uniaxial compression defor...
An SEM in situ uniaxial tensile testing setup allowing HR-EBSD acquisition during deformation was us...
Magnesium alloys, owing to their low density and high specific strength, are potential candidates fo...
Magnesium (Mg) is the lightest structural metal in the world. Therefore, Mg alloys hold great promis...