Laser surface structuring with 100W of average power and sub-ps pulses
Version
Published
Date Issued
2016
Author(s)
Jaeggi, Beat
Markovic, Vesna
Resan, Bojan
Weingarten, Kurt
de Loor, Ronny
Penning, Lars
Type
Article
Language
English
Abstract
High throughput still represents a key factor for industrial use of ultrashort pulses in the field of surface structuring. Reliable systems with average powers up to 100W are today available. It has already been proved that metals, especially steel having a low threshold fluence, can be machined with excellent surface quality at average powers of more than 40W and a spot radius of about 25lm, if a polygon line scanner, offering fast scanning speeds, is used. A further scale-up into the 100W regime should be possible for metals showing a threshold fluence of about 0.2 J/cm2 or higher. But, it will lead to problems with heat accumulation in the case of steel and a straight forward scale-up is not possible. In order to keep a good surface quality, the machining strategy has to be adapted. A maximum flexibility can be obtained with an “interlaced” mode by using very high marking speeds of several 100m/s and repetition rates of several tenths of MHz. As this is at the edge of today available technologies, alternative strategies are additionally investigated. Enlarging the spot size represents the most simple approach to reduce the heat accumulation in the case of steel but also multispots represent an attractive alternative.
Publisher DOI
Journal
Journal of Laser Applications
ISSN
1938-1387
Publisher URL
Volume
28
Issue
2
Conference
ICALEO 2015 Conference
Publisher
Laser Institute of America (LIA)
Submitter
ServiceAccount
Citation apa
Neuenschwander, B., Jaeggi, B., Zimmermann, M., Markovic, V., Resan, B., Weingarten, K., de Loor, R., & Penning, L. (2016). Laser surface structuring with 100W of average power and sub-ps pulses. In Journal of Laser Applications (Vol. 28, Issue 2). Laser Institute of America (LIA). https://doi.org/10.24451/arbor.7608
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