INFLUENCE OF THE PARAMETERS OF THE LASER MARKING PROCESS ON THE DEPTH OF PENETRATION IN LAYER-REINFORCED COMPOSITES

Authors

  • Simeon Tsenkulovski dep. "Mechanical Engineering and Instrumentation", Technical university-Gabrovo (BG)
  • Ivan Mitev dep. " Economics", Technical university-Gabrovo (BG)

DOI:

https://doi.org/10.17770/etr2024vol3.8147

Keywords:

plasma marking, textolite, glass textolite, marking stroke depth

Abstract

In the present study, we track the influence of the change in the energy parameters of a laser installation based on Fiber laser - RFFL-P-502B, on the depth of penetration in marking layer-reinforced polymer-based composites. To determine their influence on the depth of the marked strokes, experiments were carried out at speed V= 50÷250 mm/s, output power P = 5÷50 W, pulse frequency f = 50 kHz and diameter of the focal spot 40μm. Tabular results and graphical dependences of the obtained experimental results are presented.

.

Downloads

Download data is not yet available.

References

Mitev, I., Unconventional electrotechnological processes, EKS-PRESS, Gabrovo, 2020, ISBN 978-954-490-698-7

Amara EH, Haïd F, Noukaz A. Experimental investigations on fiber laser color marking of steels. Appl Surf Sci 2015;351:1–12. doi:10.1016/j.apsusc.2015.05.095.

Han A, Gubencu D. Analysis of the laser marking technologies. Nonconventional Technol. Rev. 2008;4:17–22.

Ready JF, et al. LIA handbook of laser materials processing. New York: Springer Verlag; 2001.

Leone C, Genna S, Caprino G, De Iorio I. AISI 304 stainless steel marking by a Qswitched diode pumped Nd:YAG laser. J Mater Process Technol 2010;210(10):1297– 303. doi:10.1016/j.jmatprotec.2010.03.018.

Astarita A, Genna S, Leone C, Memola Capece Minutolo F, Squillace A, Velotti C. Study of the laser marking process of cold sprayed titanium coatings on aluminium substrates. Opt Laser Technol 2016;83:168–76. doi:10.1016/j.optlastec.2016.04.007

Leone C, Lopresto V, De Iorio I. Wood engraving by Q-switched diodepumped frequency-doubled Nd:YAG green laser. Opt Lasers Eng 2009;47(1):161–8. doi:10.1016/j. optlaseng.2008.06.019.

Leone C, Genna S, Tagliaferri F, Palumbo B, Dix M. Experimental investigation on laser milling of aluminium oxide using a 30W Q-switched Yb:YAG fiber laser. Opt Laser Technol 2016;76:127–37. doi:10.1016/j.optlastec. 2015.08.005.

Petutschnigg A, Stöckler M, Steinwendner F, Schnepps J, Gütler H, Blinzer J, Holzer H, Schnabel T. Laser treatment of wood surfaces for ski cores: an experimental parameter study. Adv Mater Sci Eng 2013 art. N°123085. doi:10.1155/2013/123085.

Shin Y, Kim Y, Park S, Jung B, Lee J, Nelson JS. Pit and rim formation during laser marking of acrylonitrile butadiene styrene plastic. J Laser Appl 2005;17(4):243–6. doi:10.2351/1.2080405

Genna S, Leone C, Lopresto V, Tagliaferri V. An experimental study on the surface mechanisms formation during the laser milling of PMMA. Polym Compos 2015;36(6):1063–71. doi:10.1002/pc.23442.

Tuz L. Quality of marks on metals made with the use of the Nd:YAG laser engraving method. Metall Foundry Eng. 2013;39(1):55–64. doi:10.7494/mafe.2013.39.1.55.

Peter J, Doloi B, Bhattacharyya B. Parametric analysis of Nd: YAG laser marking on ceramics. Int J Manuf Tech Manage 2011;24(1-4):124–38. doi:10.1504/IJMTM.2011.046764

Li J, Lu C, Wang A, Wu Y, Ma Z, Fang X, Tao L. Experimental investigation and mathematical modeling of laser marking two-dimensional barcodes on surfaces of aluminum alloy. J Manuf Process2016;21:141–52. doi:10.1016/j.jmapro.2015.12.007.

Dumont Th, Lippert T, Wokaun A, Leyvraz P. Laser writing of 2D data matrices in glass. Thin Solid Films 2004;453-454:42–5. doi:10.1016/j.tsf.2003.11.148.

Li XS, He WP, Lei L, Wang J, Guo GF, Zhang TY, Yue T. Laser direct marking applied to rasterizing miniature Data Matrix Code on aluminum alloy. Opt Laser Technol 2016;77:31–9. doi:10.1016/j.optlastec.2015.08.020.

Petrova, D., Intelligent, Innovative and Sustainable Industry in Bulgaria – prospects and challenges, Vide I. Tehnologija. Resursi - Environment, Technology, Resources, Proceeding of the 12th International Scientific and Practical Conference „Environment. Technology. Resources“, June 20-22, 2019, Rezekne, Latvia, Volume I, pp. 210-215, ISSN 1691-5402 – print, ISSN 2256-070X – online

Petrova, D., An Alternative Approach to Reducing Aging of Innovative Industrial Products in Terms of Industry 4.0, Environment. Technology. Recourses – Proceeding of the 13-th International Scientific and Practical Conference, Rezekne Academy of Technologies, Rezekne, Latvia, 2021, ISSN 1691-5402, Online ISSN 2256-070X, p. 274-280, scopus

Petrova, D., An Approach to Modeling Innovation Obsolescence, Vide. Tehnologija. Resursi - Environment, Technology, Resources, Proceeding of the 14th International Scientific and Practical Conference, 2023, Volume I, pp. 175–179, Print ISSN 1691-5402, Online ISSN 2256-070X, DOI

Park YW, Kim T, Rhee S. Development of a monitoring system for quality prediction in laser marking using fuzzy theory. J Laser Appl 2007;19(1):55–63. doi:10.2351/1.2402519.

Zelenska KS, Zelensky SE, Poperenko LV, Kanev K, Mizeikis V, Gnatyuk V. A. Opt Laser Technol 2016;76:96–100. doi:10.1016/j.optlastec.2015.07.011.

Downloads

Published

2024-06-22

How to Cite

[1]
S. Tsenkulovski and I. Mitev, “INFLUENCE OF THE PARAMETERS OF THE LASER MARKING PROCESS ON THE DEPTH OF PENETRATION IN LAYER-REINFORCED COMPOSITES”, ETR, vol. 3, pp. 319–324, Jun. 2024, doi: 10.17770/etr2024vol3.8147.