Diana Ilie - Academia.edu (original) (raw)

Diana Ilie

Related Authors

Benjamin Isakhan

Gerard Steen

David Seamon

Ricardo M O Campos

Armando Marques-Guedes

Gabriel Gatti

Gabriel Gatti

University of the Basque Country, Euskal Herriko Unibertsitatea

Muriel Norde

Fabian R W Stolk

Aimilia Vilou

Aimilia Vilou

Panteion University of Social and Political Sciences

Uploads

Papers by Diana Ilie

Research paper thumbnail of Controlled process for polymer micromachining using designed pulse trains of a UV solid state laser

Applied Surface Science, 2007

A flexible workstation equipped with a solid state laser operating at 266 nm wavelength was used ... more A flexible workstation equipped with a solid state laser operating at 266 nm wavelength was used to machine holes in polyethylene terephthalate, polyimide and polycarbonate. An optical pulse picker was employed to reduce the high repetition rates of the laser, while a breakthrough sensor was used to avoid over-drilling of through holes. For each material, different repetition rates and designed pulse trains were tested to improve feature quality and process efficiency. Although the three polymers had very different reactions at this wavelength they all showed an improvement in feature quality with decreasing repetition rate due to a reduction in thermal effects. Up to 10 kHz the average depth per pulse remained unchanged and afterwards a slight increase was observed but this was accompanied by large uncertainties. Bursts of pulses at 40 kHz inserted inside the low repetition rate pulse train reduced the drilling time and the amount of debris redeposited without affecting the feature quality. It was found that a number of cleaning pulses after perforation eliminates the heat affected zone around exits. Holes with entrance diameters below 20 mm and exit diameters as small as 2 mm were obtained with high repeatability.

Research paper thumbnail of Controlled process for polymer micromachining using designed pulse trains of a UV solid state laser

Applied Surface Science, 2007

A flexible workstation equipped with a solid state laser operating at 266 nm wavelength was used ... more A flexible workstation equipped with a solid state laser operating at 266 nm wavelength was used to machine holes in polyethylene terephthalate, polyimide and polycarbonate. An optical pulse picker was employed to reduce the high repetition rates of the laser, while a breakthrough sensor was used to avoid over-drilling of through holes. For each material, different repetition rates and designed pulse trains were tested to improve feature quality and process efficiency. Although the three polymers had very different reactions at this wavelength they all showed an improvement in feature quality with decreasing repetition rate due to a reduction in thermal effects. Up to 10 kHz the average depth per pulse remained unchanged and afterwards a slight increase was observed but this was accompanied by large uncertainties. Bursts of pulses at 40 kHz inserted inside the low repetition rate pulse train reduced the drilling time and the amount of debris redeposited without affecting the feature quality. It was found that a number of cleaning pulses after perforation eliminates the heat affected zone around exits. Holes with entrance diameters below 20 mm and exit diameters as small as 2 mm were obtained with high repeatability.

Log In