LASER MARKING ON SAMPLES WITH CHROMIUM-NICKEL COATING

Authors

  • Nikolay Dolchinkov Vasil Levski National military University, Veliko Tarnovo, Bulgaria
  • Milen Tortorikov Vasil Levski National military University, Veliko Tarnovo, Bulgaria

DOI:

https://doi.org/10.68302/std2026.vol2.193

Keywords:

chromium-nickel, laser, marking, power, roughness, speed

Abstract

In the 21st century, laser marking is increasingly used. Very good results are achieved when working on resistant materials such as plexiglass or chromium-nickel samples, where good color marking is also achieved.

Products that are made of or coated with chromium-nickel are used in the manufacture of a number of parts and products. This is especially true for products that are produced in the enterprises of the military-industrial complex. Marking such products in the current complex international situation and the conduct of military operations in Ukraine, Israel, Yemen and other countries will make tracking military production a much easier task. The experiments were conducted on thin samples of chromium-nickel and the change in marking quality with changes in the speed and power of the laser and the roughness of the material were studied. The results obtained were analyzed and this will provide an opportunity both for using the results obtained and for continuing research. These studies were conducted at the Laser Center of Rezekne Academy of Technology during an Erasmus internship.

Downloads

Download data is not yet available.

References

[1] Dolchinkov N., The laser – creation, development and perspectives, Annual Scientific Conference of Vasil Levski National University - June 27-28, 2019. ISSN 2367-7481 p. 456-465

[2] Dolchinkov N., Development of laser technologies, Innovations in technologies and education. Collection of articles of the participants of the XIV International Scientific and Practical Conference. Kemerevo, Belovo, Novosibirsk, Veliko-Tyrnovo, Shumen, 2021. S. 50-57

[3] Dolchinkov N., Practical research of marking and cutting of textiles with increased resistance, using CO2 laser, Journal of Physics: Conference Series, Volume 1681, 2020, 1681 012014 IOP Publishing The 6th International Conference on Chemical Materials and Process 2-4 July 2020, Warsaw, Poland, doi:10.1088/1742-6596/1681/1/012014 Online ISSN: 1742-6596 Print ISSN: 1742-6588

[4] Dolchinkov N., M. Tortorikov, Investigation Of Laser Marking On Chromium Nickel Samples, Environment. Technology. Resources. Rezekne, Latvia, Proceedings of the 15th International Scientific and Practical Conference. Volume III, Print ISSN 1691-5402, Online ISSN 2256-070X, https://doi.org/10.17770/etr2024vol3.8175, pp 370-374

[5] Dolchinkov N., Shterev Y., St. Lilianova, D. Boganova, M. Peneva, L. Linkov, D. Nedialkov, Exploring the possibility of laser cutting with CO2 laser on felt in the range from 1W to 26W power, International scientific journal: Industry 4.0 Issue 1/2019, ISBN 2534-8582, p. 29-31.

[6] Jurčs, V. E. Yankov, N. Angelov, A. Pacejs, I. Adijāns, Influence of technological parameters on laser marking process of copper surfaces, Vol. 3 (2024): Environment. Technology. Resources. Proceedings of the 15th International Scientific and Practical Conference. Volume 3, https://doi.org/10.17770/etr2024vol3.8179, pp. 393-398

[7] Mežinska S., A. Pacejs, I. Adijāns, E. Zaicevs, L.Lazov, Study of adhesion of physical vapor deposition coatings on functional textile with laser post-processing, Vol. 3 (2024): Environment. Technology. Resources. Proceedings of the 15th International Scientific and Practical Conference. Volume 3, https://doi.org/10.17770/etr2024vol3.8178, pp. 425-429

[8] Lazov L,, H. Deneva, E. Teirumnieka, Study of Auxiliary Gas Pressure on Laser Cutting Technology, Environment. Technology. Resources, Rezekne, Latvia Proceedings of the 11th International Scientific and Practical Conference. Volume III, 159-162

[9] Lazov L., E. Teirumnieks, Application of laser technology in the army, Proceedings of International Scientific Conference "Defense Technologies", Faculty of Artillery, Air Defense and Communication and Information Systems, Shumen, Bulgaria, 2018

[10] Shterev Y., N. Dolchinkov, St. Lilianova, D. Boganova, M. Peneva, L. Linkov, D. Nedialkov, Examining the possibility Of marking and engraving of textile using CO2 laser, International journal for science Machines, Technologies, Materials 12/2018 p. 491-493

[11] Shterev Y., N. Dolchinkov, St. Lilianova, D. Boganova, M. Peneva, L. Linkov, D. Nedialkov, Laser marking and cutting of plexiglas with CO2, International journal for science Machines, Technologies, Materials 4/2018 pp. 494-496.

[12] Lazov L., Angelov N., Scanning the contrast in function of velocity in laser marking of samples of steel, International Scientific Conference, Gabrovo, 2010.

[13] Lazov L., Dolchinkov N. T., Shterev Y., Boganova D., Peneva M, Study of laser cutting and marking on the felt with the help of a CO2-laser, 12th International Scientific and Practical conference Environment. Technology. Resources. ISBN 1691-5402, Vol 3, 20-22.06.2019, Rezekne, Latvia, p. 143-147, DOI.org/10.17770/ETR2019VOL3.4202;

[14] Lazov L., Dolchinkov N. T., Shterev Y., Lilianova St., Pacejs Anton, Use of CO2 laser for marking and clearing of textile materials for manufacture of military equipment, 12th International Scientific and Practical conference Environment. Technology. Resources. Vol 3, 20-22.06.2019 Rezekne, Latvia, ISBN 1691-5402, p. 32-36;

[15] Lazov L., Dolchinkov N. T., Shterev Y., L. Linkov, D. Nedialkov, Study of cutting and labeling of polymethylmethacrylate using a CO2 laser, 12th International Scientific and Practical conference Environment. Technology. Resources. ISBN 1691-5402, Vol 3, 20-22.06.2019 Rezekne, Latvia, p. 37-40.

[16] Tonchev N., V. Georgiev, N. Dolchinkov, N. Padarev, E. Yankov, Methodology and model for the study of relative accuracy deviation in laser cutting of c 235 steel, Vol. 3 (2024): Environment. Technology. Resources. Proceedings of the 15th International Scientific and Practical Conference. Volume 3, DOI: https://doi.org/10.17770/etr2024vol3.8171, pp. 445-448

[17] Lazov L., T. Karadzhov, E.Teirumnieks, A. Pacejs, C. Conev, Methods for measurement of pulse parameters of fiber lasers, Vol. 3 (2024): Environment. Technology. Resources. Proceedings of the 15th International Scientific and Practical Conference. Volume 3, pp. 406-412

[18] Petrova, D., Vlahova, B., Lengerov, A., Zlateva-Petkova, T., Improvement of Constructive-Technological Approaches Reducing Innovative Obsolescence of Industrial Technologies in the Context of Industry 4.0, Vide Tehnologija Resursi Environment Technology ResourcesOpen source preview, 2023, 1, pp. 180–186.

[19] Petrova, D., Vlahova, B., Lengerov, A., Zlateva-Petkova, T., Study of the State of Innovation Development and Obsolescence in the Republic of Bulgaria of Companies from the Mechanical Engineering Sector, Vide Tehnologija Resursi Environment Technology ResourcesOpen source preview, 2023, 1, pp. 187–194.

[20] Petrova, D., Innovative Obsolescence in Mechanical Engineering and Singleness of Indicators, Vide Tehnologija Resursi Environment Technology ResourcesOpen source preview, 2024, 3, pp. 221–224.

[21] Toneva, D., Dimitrova, D., Some aspects of the water crisis in Bulgaria, 5th International Scientific Practical Conference „Environment. Technology. Resources “, Published by Rezekne Academy of Technologies, Latvia. Volume I, pp. 373-377, ISSN 1691-5402, ISBN 978–171389957–0.

[22] Rachovski, T., Petrova, D., Ivanov, I., Automated Creation of Educational Questions: Analysis of Artificial Intelligence Technologies and Their Role in Education, Vide Tehnologija Resursi Environment Technology ResourcesOpen source preview, 2024, 2, pp. 465–467.

[23] Petrova, D., An Approach to Modeling Innovation Obsolescence, Vide Tehnologija Resursi Environment Technology ResourcesOpen source preview, 2023, 1, pp. 175–179.

[24] Padarev N. I. , Adjusting the Quantity of Surfactants in Decontamination Solutions. Environment. Technology. Resources. Rezekne, Latvia, Proceedings of the 16th International Scientific and Practical Conference. 2025. Volume V, 219-223, DOI: https://doi.org/10.17770/etr2025vol5.8469

Downloads

Published

17.09.2026

How to Cite

[1]
N. Dolchinkov and M. Tortorikov, “LASER MARKING ON SAMPLES WITH CHROMIUM-NICKEL COATING”, SysTechDev, vol. 2, pp. 413–417, Sep. 2026, doi: 10.68302/std2026.vol2.193.