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- W2006090049 abstract "Aluminum alloys typically have as received reflectivities of 85 - 95% at 10.6 micrometers making many laser processes difficult or impossible. These values have been reduced to as low as 1 - 2% by optimizing the processing parameters of an excimer laser used to modify the surface structure of 8090 and 2024 Al alloys and pure Al prior to their exposure to a CO<SUB>2</SUB> laser. The most significant excimer processing parameters were found to be the scan pattern of the excimer beam, the number of pulses per scan pattern step (dwell time) and the laser fluence. Optimizing these parameters allows the production of a rough oxide rich surface and reflectivities at 10.6 micrometers routinely below 10%. Preliminary results are presented from the practical implementation of the technique to a dual wavelength (CO<SUB>2</SUB>/excimer) cutting system. Increases in cutting speeds of between 2 - 4 times are demonstrated with 8090 Al-Li alloy using dual wavelength laser processing." @default.
- W2006090049 created "2016-06-24" @default.
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- W2006090049 date "1994-09-07" @default.
- W2006090049 modified "2023-09-23" @default.
- W2006090049 title "Enhancing the absorption of aluminum alloys by irradiation with an excimer laser" @default.
- W2006090049 doi "https://doi.org/10.1117/12.184770" @default.
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