Amorphous metallic glass Cu47Ti35Zr11Ni6Si1 was investigated by load-control nanoindentation experiments using the cube corner indenter tip over a wide range of loading rates. The indentation hardness was calculated using different methods either from the loading curves or indent area. Pop-in events were observed on the loading part of the indentation curves mainly at lower rates of loading. Instantaneous plastic deformation decreases with increasing loading rate according to a power law. At high loading rate the instantaneous deformation is suppressed by continuous plastic deformation and no well-developed pop-ins are observed. The morphology of shear bands in the pile-up area of indents showed no correlation with the pop-in event populati...
Using nanoindentation, we examine the fundamental nature of plasticity in a bulk amorphous metal. We...
The existence of an indentation size effect (ISE) in the onset of yield in a Zr-based bulk metallic ...
The nanoindentation technique was employed to examine the strain rate sensitivity, m, and its depend...
Amorphous metallic glass Cu47Ti35Zr11Ni6Si1 was investigated by load-control nanoindentation experim...
Nanoindentation experiments at the loading rates from 0.05 to 100 mN.s-1 on the amorphous FeNiB allo...
In order to study the loading rate-sensitive shear band formation, nanoindentation tests with a cube...
Plastic deformation after indentation of the metallic glass Cu47Ti35Zr11Ni6Si1 at different loading ...
The nature of displacement burst features throughout the load-controlled instrumented indentation of...
A binary metallic glass (MG) Cu49.3Zr50.7 in the form of thin film was successfully grown on a Si (1...
The mechanical behavior of Ti-based metallic glass has been investigated by means of indentation exp...
This study investigated the deformation behaviour of a Ti32.8Zr30.2Ni5.3Cu9Be22.7 bulk metallic glas...
Most of the previous nanoindentation experiments on bulk metallic glasses (BMGs) were made under a c...
To understand how hardness, the key design parameter for applications of brittle solids such as glas...
Plastic deformation of Pd–40Ni–20P bulk metallic glass (BMG) was investigated by instrumented nanoin...
Using nanoindentation, we examine the fundamental nature of plasticity in a bulk amorphous metal. We...
The existence of an indentation size effect (ISE) in the onset of yield in a Zr-based bulk metallic ...
The nanoindentation technique was employed to examine the strain rate sensitivity, m, and its depend...
Amorphous metallic glass Cu47Ti35Zr11Ni6Si1 was investigated by load-control nanoindentation experim...
Nanoindentation experiments at the loading rates from 0.05 to 100 mN.s-1 on the amorphous FeNiB allo...
In order to study the loading rate-sensitive shear band formation, nanoindentation tests with a cube...
Plastic deformation after indentation of the metallic glass Cu47Ti35Zr11Ni6Si1 at different loading ...
The nature of displacement burst features throughout the load-controlled instrumented indentation of...
A binary metallic glass (MG) Cu49.3Zr50.7 in the form of thin film was successfully grown on a Si (1...
The mechanical behavior of Ti-based metallic glass has been investigated by means of indentation exp...
This study investigated the deformation behaviour of a Ti32.8Zr30.2Ni5.3Cu9Be22.7 bulk metallic glas...
Most of the previous nanoindentation experiments on bulk metallic glasses (BMGs) were made under a c...
To understand how hardness, the key design parameter for applications of brittle solids such as glas...
Plastic deformation of Pd–40Ni–20P bulk metallic glass (BMG) was investigated by instrumented nanoin...
Using nanoindentation, we examine the fundamental nature of plasticity in a bulk amorphous metal. We...
The existence of an indentation size effect (ISE) in the onset of yield in a Zr-based bulk metallic ...
The nanoindentation technique was employed to examine the strain rate sensitivity, m, and its depend...