Have a personal or library account? Click to login
Using the Response Surface Methodology (RSM) to Improve the Cutting of S355J2C+N Steel Cover

Using the Response Surface Methodology (RSM) to Improve the Cutting of S355J2C+N Steel

Open Access
|Dec 2025

References

  1. Klimpel A. Theoretical basis of laser cutting of metals. Overview of welding. 2021; 84(6):2-7.
  2. Zaborski S, Stechnij T. Thermal methods of shaping from sheets of inox and coal steels. Machine Engineering. 2011;16 (4):109-116.
  3. Szulc T. Thermal cutting : perspectives and limitations. Steel. Metals & New Technologies. 2018;3-4:73-77.
  4. Klimpel A. Quality of laser cutting of metals. Cutting technologies. Steel. Metafiles & New Technologies. 2012; 48-54.
  5. Mazurkiewicz A. Influence of laser cutting parameters on the surface quality. P. 1. Steel. Metals & New Technologies. 2016; 9-10: 112-118.
  6. Mazurkiewicz A. Influence of laser cutting parameters on the surface quality. P. 2. Steel. Metals & New Technologies. 2016; 11-12: 25-30.
  7. Serek P. Łatka L. Influence of plasma cutting parameters on cut surface quality. Overview of welding. 2016; 8:68-72.
  8. Kalashnikov A, Kłos S. Study of the influence of plasma cutting process parameters on product quality. In: Innovations in production management and engineering. Edited by Ryszard Knosala. Publishing House of the Polish Society for Production Management. Opole. 2018; 1(5): 554-563. http://46.242.185.119/off_ptzp.org.pl/s107/Artykuly_IZIP_2018
  9. Brzozowski A. Quality of surface layer of steel after laser cutting process. In: Scientific Journals of the Poznań University of Technology. Machine Construction and Production Management. 2008; 8:13-20.
  10. Kukielka L, Patyk R, Bohdal L, Napadlek W, Gryglicki R, Kasprzak P. Investigations of polypropylene foil cutting process using fiber nb: yag and diode nd:YVO4 lasers. Acta Mechanica et Automatica. 2019; 13(2).
  11. PN-EN ISO 9013:2017-04: Thermal cutting - Classification of thermal cuts - Geometrical product specification and quality tolerances.
  12. Thomas DJ. Finite Element Analysis of Laser Cut Edge Beam Section for High Stress Intensity Structural Assessment. J Fail. Anal. and Preven. 2016;16:562–575. https://doi.org/10.1007/s11668-016-0124-z
  13. Jakubus, A, Soinski MS, Mierzwa P, Stradomski G. Regression Analysis and Optimum Values of Austempering Affecting Mechanical Properties of Compacted Graphite Iron. Materials. 2024; 17(20):5024. https://doi.org/10.3390/ma17205024
  14. Peretz A, Kawecka E, Pude F. Enhancing High-Alloy Steel Cutting with Abrasive Water Injection Jet (AWIJ) Technology: An Approach Using the Response Surface Methodology (RSM). Materials. 2024; 17(16):4020. https://doi.org/10.3390/ma17164020
  15. Fajdek-Bieda A. Optimization of the Geraniol Transformation Process in the Presence of Natural Mineral Diatomite as a Catalyst. Catalysts. 2023; 13(4):777. https://doi.org/10.3390/catal13040777
  16. Perec A, Radomska-Zalas A, Fajdek-Bieda A, Pude F. Process optimization by applying the response surface methodology (RSM) to the abrasive suspension, water, jet cutting of phenolic composites. Facta Univ. Ser. Moss. Eng. 2023; 21: 575–589.
  17. Ananthakumar K, Rajamani D, Balasubramanian E, Paulo Davim J. Measurement and optimization of multi-response characteristics in plasma arc cutting of Monel 400TM using RSM and TOPSIS. Measurement 2019: 135: 725–737.
  18. Kheloufi K, El Hachemi A. Numerical investigation of the effect of some parameters on temperature, field and kerf width in laser cutting process. Phys. Procedia. 2012; 39: 872–880.
  19. Thomas DJ, Whittaker MT, Bright GW, Gao Y. The influence of mechanical and CO2 laser cut-edge characteristics on the fatigue life performance of high strength automotive steels. J. Mater. Process. Technol. 2011; 211; 263–274.
  20. PN-EN 10025-2:2007: Hot rolled products of structural steels - Part 2: Technical delivery conditions for non-alloy structured steels - changes in comparison with PN-EN 10025:2002 and their interpretation.
  21. Wik B. Study of the influence of laser cutting parameters on the quality of the cut surface of selected materials. Engineering diploma thesis. Supervisor Jasinski M. Jacob of Paradies University. Faculty of Technology. Gorzów Wlkp. Poland 2024.
  22. Nowakowski L, Blasiak S, Skrzyniarz M. Influence of the Relative Displacements and the Minimum Chip Thickness on the Surface Texture in Shoulder Milling. Materials. 2023;16(24):7661. https://doi.org/10.3390/ma16247661
  23. Jakubus A. Initial Analysis of the Surface Layer of AVGI Cast Iron Subject to Abrasion. Archives of Foundry Engineering. 2022; 22 (2): 1-7.
  24. Dyl T, Rydz D, Szarek A, Stradomski G, Fik J, Opydo M. The Influence of Slide Burnishing on the Technological Quality of X2CrNiMo17-12-2 Steel. Materials. 2024;17(14):3403. https://doi.org/10.3390/ma17143403
  25. Wachowicz J, Fik J, Balaga Z, Stradomski G. Testing for Abrasion Resistance of WC-Co Composites for Blades Used in Wood-Based Material Processing. Materials. 2023;16(17):5836. https://doi.org/10.3390/ma16175836
DOI: https://doi.org/10.2478/ama-2025-0068 | Journal eISSN: 2300-5319 | Journal ISSN: 1898-4088
Language: English
Page range: 605 - 610
Submitted on: Mar 9, 2025
Accepted on: Oct 7, 2025
Published on: Dec 19, 2025
Published by: Bialystok University of Technology
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2025 Aneta JAKUBUS, Joanna KOSTRZEWA, Marcin JASIŃSKI, Bartłomiej Wik, Maciej NADOLSKI, published by Bialystok University of Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.