Improving processing rates matches the demand for less cycle time for industrial applications. While high precision laser cutting calls for narrow kerf width and reduced heat-affected-zone (HAZ), test cutting of thin stainless steel and copper sheets using high beam quality Nd: YAG lasers indicates that, as the laser beam is focused down to a certain size, kerf formation and material removal becomes more difficult as beam size decreases. It is found that even when laser power is sufficiently high to penetrate the sheet sample, the melt pool re-solidifies backward and heals the kerf immediately after the laser beam passes, leading to low cutting efficiency. The melt behavior is analyzed in terms of energy utilization and material removal mechanisms. The results suggest that melt removal is the rate determination factor in Q-switched laser cutting of metal sheets.
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ICALEO 2003: 22nd International Congress on Laser Materials Processing and Laser Microfabrication
October 13–16, 2003
Jacksonville, Florida, USA
ISBN:
978-0-912035-75-8
PROCEEDINGS PAPER
Melt behavior and its effect on process speed in precision cutting of thin metal sheets using Q-switched Nd:YAG green laser Available to Purchase
Yonggang Li;
Yonggang Li
Control Systemation, Inc., an Excel Technology Company
2419 Lake Orange Drive, Orlando, FL 32837, USA
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Greg Anderson
Greg Anderson
Control Systemation, Inc., an Excel Technology Company
2419 Lake Orange Drive, Orlando, FL 32837, USA
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Published Online:
October 01 2003
Citation
Yonggang Li, Greg Anderson; October 13–16, 2003. "Melt behavior and its effect on process speed in precision cutting of thin metal sheets using Q-switched Nd:YAG green laser." Proceedings of the ICALEO 2003: 22nd International Congress on Laser Materials Processing and Laser Microfabrication. ICALEO 2003: 22nd International Congress on Laser Materials Processing and Laser Microfabrication. Jacksonville, Florida, USA. (pp. P511). ASME. https://doi.org/10.2351/1.5060153
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