A simple mathematical model was developed to predict the machined depth and surface profile in laser surface texturing of micro-channels using a picosecond laser. Fabrication of micro-craters with pulse trains of different numbers was initially performed. Two baseline values from the created micro-craters were used to calculate the estimated simulation parameters. Thereafter, the depths and profiles with various scanning speeds or adjacent intervals were simulated using the developed model and calculated parameters. Corresponding experiments were conducted to validate the developed mathematical model. An excellent agreement was obtained for the predicted and experimental depths and surface profiles. The machined depth decreased with the inc...
In many modern technologies, miniaturization is an important trend and as such, micromachining has b...
Recent advances in laser machining technology have made it possible to fabricate parts and features ...
This project is focused on developing physics-based models to predict the outcome of pulsed laser mi...
A simple mathematical model was developed to predict the machined depth and surface profile in laser...
An analytical model is presented that allows predicting the progress and the final depth obtained by...
To explore the forming process and mechanism of the surface texture of laser micropits, this paper p...
International audienceThe present study concerns laser surface texturing and is,more particularly, a...
The femtosecond laser technology is emerging as a powerful and flexible tool for the fabrication of ...
AbstractThe generation of micro-features in a predictable and repeatable manner by use of pulsed las...
Micromachining with short and ultra-short laser pulses has evolved over the past years as a versatil...
Laser polishing is a finishing process based on melting material, with the objective of improving su...
Laser ablation using diode pumped solid state lasers shows great potential for a wide range of micro...
This paper investigates the effects of process parameters (laser power, scan speed, frequency and fi...
International audienceThe surface roughness of picosecond laser micromachined sidewalls in silicon i...
In order to fabricate micro surface textures on alumina ceramic, the effects of single pulse interva...
In many modern technologies, miniaturization is an important trend and as such, micromachining has b...
Recent advances in laser machining technology have made it possible to fabricate parts and features ...
This project is focused on developing physics-based models to predict the outcome of pulsed laser mi...
A simple mathematical model was developed to predict the machined depth and surface profile in laser...
An analytical model is presented that allows predicting the progress and the final depth obtained by...
To explore the forming process and mechanism of the surface texture of laser micropits, this paper p...
International audienceThe present study concerns laser surface texturing and is,more particularly, a...
The femtosecond laser technology is emerging as a powerful and flexible tool for the fabrication of ...
AbstractThe generation of micro-features in a predictable and repeatable manner by use of pulsed las...
Micromachining with short and ultra-short laser pulses has evolved over the past years as a versatil...
Laser polishing is a finishing process based on melting material, with the objective of improving su...
Laser ablation using diode pumped solid state lasers shows great potential for a wide range of micro...
This paper investigates the effects of process parameters (laser power, scan speed, frequency and fi...
International audienceThe surface roughness of picosecond laser micromachined sidewalls in silicon i...
In order to fabricate micro surface textures on alumina ceramic, the effects of single pulse interva...
In many modern technologies, miniaturization is an important trend and as such, micromachining has b...
Recent advances in laser machining technology have made it possible to fabricate parts and features ...
This project is focused on developing physics-based models to predict the outcome of pulsed laser mi...