In this paper, we investigate the influence of the following parameters: pulse duration, pulse repetition rate, line-to-line and pulse-to-pulse overlaps, and scanning strategy on the ablation of AISI 316L steel and CuZn37 brass with a nanosecond, 1064-nm, Yb fiber laser. The results show that the material removal rate (MRR) increases monotonically with pulse duration up to the characteristic repetition rate (f$_0$) where pulse energy and average power are maximal. The maximum MRR is reached at a repetition rate that is equal or slightly higher as f$_0$. The exact value depends on the correlation between the fluence of the laser pulses and the pulse repetition rate, as well as on the material properties of the sample. The results show that s...
Laser engraving process is non-conventional machining process used for engraving of almost each mate...
Fiber lasers in MOPA configuration are a very flexible tool for micromachining applications since th...
This research investigated the ablation process of commercial stainless steels with ultrashort pulse...
High average power (>50 W) nanosecond pulsed fiber lasers are now routinely available owing to th...
International audienceUltrafast laser ablation is an efficient method for precise micro-machining. T...
AbstractUltrashort pulsed lasers like ps- and fs-lasers with single pulses and pulse bursts allow a ...
Ultrashort pulsed lasers like ps- and fs-lasers with single pulses and pulse bursts allow a high abl...
The high throughput in the laser microfabrication is a key factor for most of industry companies. In...
AbstractAblation characteristics of copper and stainless steel with laser pulses from 10 to 100 ps a...
Aim of the work is to investigate the influence of the process parameters on the material removal ra...
AbstractWhen high requirements concerning machining quality are demanded, ultra short pulsed lasers ...
Laser ablation is a subtractive micromachining technique, which can be employed to improve the surfa...
Laser deep engraving is one of the most promising technologies used in rapid prototyping to produce ...
Hot-dipped galvanized steel is processed with short- and ultrashort-pulsed lasers in air at near-inf...
The work presented in this thesis investigates the use of 100 W and 200 W nanosecond pulsed fibre ...
Laser engraving process is non-conventional machining process used for engraving of almost each mate...
Fiber lasers in MOPA configuration are a very flexible tool for micromachining applications since th...
This research investigated the ablation process of commercial stainless steels with ultrashort pulse...
High average power (>50 W) nanosecond pulsed fiber lasers are now routinely available owing to th...
International audienceUltrafast laser ablation is an efficient method for precise micro-machining. T...
AbstractUltrashort pulsed lasers like ps- and fs-lasers with single pulses and pulse bursts allow a ...
Ultrashort pulsed lasers like ps- and fs-lasers with single pulses and pulse bursts allow a high abl...
The high throughput in the laser microfabrication is a key factor for most of industry companies. In...
AbstractAblation characteristics of copper and stainless steel with laser pulses from 10 to 100 ps a...
Aim of the work is to investigate the influence of the process parameters on the material removal ra...
AbstractWhen high requirements concerning machining quality are demanded, ultra short pulsed lasers ...
Laser ablation is a subtractive micromachining technique, which can be employed to improve the surfa...
Laser deep engraving is one of the most promising technologies used in rapid prototyping to produce ...
Hot-dipped galvanized steel is processed with short- and ultrashort-pulsed lasers in air at near-inf...
The work presented in this thesis investigates the use of 100 W and 200 W nanosecond pulsed fibre ...
Laser engraving process is non-conventional machining process used for engraving of almost each mate...
Fiber lasers in MOPA configuration are a very flexible tool for micromachining applications since th...
This research investigated the ablation process of commercial stainless steels with ultrashort pulse...