The molecular dynamics simulations of nanomachining processes have provided insight into process parameters, material removal and tool wear mechanisms. Simulation results clearly show the material removal phenomena of rubbing, ploughing and cutting. However, many of the simulation results are not backed up by experimental validations, even though they match intuitive guess. There is an attempt in this study to validate some of these results. In the validations of these molecular dynamics simulation of nanometric machining, experiments were carried out on a Nanoform 250 diamond turning machine tool. The tool-workpiece contact was determined by running preliminary passes and using Acoustic Emission (AE) sensors for the nano touch. The analyse...
AbstractAcoustic emission (AE) signals, generated during the machining of steel, were analyzed in or...
Artículo de publicación ISIAcoustic emission (AE) is very sensitive to minuscule molecular changes w...
AbstractIn this study, the brittle-ductile transition in nanometric machining of mono-crystalline si...
An atomic force microscope (AFM) with suitable tips has been used for nano fabrication/nanometric ma...
Understanding material behaviour during nanoscale machining is critical for improving machining effi...
The multi-pass nanometric machining of copper with diamond tool was carried out using the Molecular...
This study aims to determine the machining characteristics during nano-scratching of silicon wafers ...
Acoustic Emissions (AE) monitoring has been proved as an effective non-destructive technique at the ...
The development of ultra–precision processes which can achieve nanometre surface finishes and tolera...
One of the major tasks in a Molecular Dynamics (MD) simulation is the selection of adequate potentia...
Tool wear is a significant factor affecting the machined surface quality. In this paper, a Molecular...
The development of ultra–precision processes which can achieve excellent surface finish and toleran...
Miniaturization towards the nanoscale is now the trend of technological developments in products and...
An intelligent non-destructive method of monitoring and detecting failures in machining processes i...
Acoustic emission (AE) study of steady and chatter mode peakless tool turning has been carried out i...
AbstractAcoustic emission (AE) signals, generated during the machining of steel, were analyzed in or...
Artículo de publicación ISIAcoustic emission (AE) is very sensitive to minuscule molecular changes w...
AbstractIn this study, the brittle-ductile transition in nanometric machining of mono-crystalline si...
An atomic force microscope (AFM) with suitable tips has been used for nano fabrication/nanometric ma...
Understanding material behaviour during nanoscale machining is critical for improving machining effi...
The multi-pass nanometric machining of copper with diamond tool was carried out using the Molecular...
This study aims to determine the machining characteristics during nano-scratching of silicon wafers ...
Acoustic Emissions (AE) monitoring has been proved as an effective non-destructive technique at the ...
The development of ultra–precision processes which can achieve nanometre surface finishes and tolera...
One of the major tasks in a Molecular Dynamics (MD) simulation is the selection of adequate potentia...
Tool wear is a significant factor affecting the machined surface quality. In this paper, a Molecular...
The development of ultra–precision processes which can achieve excellent surface finish and toleran...
Miniaturization towards the nanoscale is now the trend of technological developments in products and...
An intelligent non-destructive method of monitoring and detecting failures in machining processes i...
Acoustic emission (AE) study of steady and chatter mode peakless tool turning has been carried out i...
AbstractAcoustic emission (AE) signals, generated during the machining of steel, were analyzed in or...
Artículo de publicación ISIAcoustic emission (AE) is very sensitive to minuscule molecular changes w...
AbstractIn this study, the brittle-ductile transition in nanometric machining of mono-crystalline si...