INCREASING THE EFFECIENCY OF LASER MARKING OFALUMINUM ALLOYS BY DOUBLE WRITING OF THE SYMBOLS

Authors

  • Atanas Atanasov TU – Sofia, Plovdiv Branch (BG)
  • Angel Lengerov TU – Sofia, Plovdiv Branch (BG)

DOI:

https://doi.org/10.17770/etr2021vol3.6550

Keywords:

double writing, aluminium, aluminium alloys, effectiveness, laser marking, copper bromide vapour laser

Abstract

A comparison is made between samples marked by writing letters and symbols once, with these marked by twice but writing with two times greater velocity. As a consequence of the sharp decreasing of the main characteristic of the material –its reflective index, in the second case we received an enhancement of the effectiveness of the laser marking, decreasing energy use at the same time. Experimental studies have been carried out with a CuBr (copper bromide vapour) laser for specific mechanical engineering details.

 

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References

Angelov N., L. Lazov, A. Atanasov Increasing the efficiency of laser marking of tool steel by double writing the symbols, International Scientific Conference UNITECH'08, Gabrovo, November 21-22, 2008

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Balchev I, Lazov L, Teirumnieks E 2019 Proceedings of the 12th International Scientific and Practical Conf. 3 13-17

Lazov L, et al. 2015 Proceedings of the 10th International Scientific and Practical Conf. 1 108-115

N.V. Sabotinov 1996 Pulsed Metal Vapour Lasers NATO ASI Series 1/5, Kluwer Academic Press. 113-124

Sabotinov N, Bergmann H, Salimbeni R, Mizeraczyk J, Wallimann C, Kostadinov I 2002 Development of a System Based on a High Power and High Efficiency Copper Bromide Laser for Precision Materials Processing, Project NATO SfP – 972685 „NATO SfP – Copper Bromide Laser”

Angelov N. Optimizaciya na procesa markirane s lazerno lichenie na obrazci ot instrumentalna stomana. Disertacionen trud za pridobivane na stepen doktor. TU-Gabrovo, 2011 (in Bulgarian)

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Published

2021-06-16

How to Cite

[1]
A. Atanasov and A. Lengerov, “INCREASING THE EFFECIENCY OF LASER MARKING OFALUMINUM ALLOYS BY DOUBLE WRITING OF THE SYMBOLS”, ETR, vol. 3, pp. 20–24, Jun. 2021, doi: 10.17770/etr2021vol3.6550.