Effect of Fiber-Laser Parameters on Cutting Accuracy of Thin and Thick S355JR Structural Steel Plates

Author:

Cepauskaite Laura1,Bendikiene Regita1ORCID

Affiliation:

1. Department of Production Engineering, Faculty of Mechanical Engineering and Design, Kaunas University of Technology, Studentu Str. 56, LT-51424 Kaunas, Lithuania

Abstract

Fiber lasers, the latest laser-cutting technology, are notable for their high process efficiency, cutting precision, and high cutting quality for thin materials. However, the quality of the cut significantly decreases when machining thicker materials. For now, this is a challenge for the metalworking industry. This study investigated the effects of laser power, cutting speed, and auxiliary gas pressure on the fiber-laser cutting quality of 4 and 6 mm thick S355JR steel plates. To evaluate the influence of cutting parameters on cutting quality, surface roughness, dimensional accuracy and cut taper were measured. A microscopic analysis of the laser cuts was performed, revealing the heat-affected zone, transition zone and unaffected base-material zone. Research results show that laser cutting is a complex process, and the correct choice of cutting parameters greatly influences the cutting performance and final quality. An artificial neural network was created and trained using the results from measuring the quality characteristics to achieve optimum cutting quality. The accuracy of the optimization model was assessed by control samples, which were cut using calculated optimum parameters. The actual values of the quality characteristics only slightly differ from the predicted values, showing that the optimization model is suitable for selecting cutting parameters.

Publisher

MDPI AG

Reference38 articles.

1. Assessment of Research Needs for Sustainability of Unconventional Machining Processes;Gamage;Procedia CIRP,2015

2. Reiff, C., Buser, M., Betten, T., Onuseit, V., Hossfeld, M., Wehner, D., and Riedel, O. (2021). A Process-Planning Framework for Sustainable Manufacturing. Energies, 14.

3. Öztürk, E.G., and Ayturan, Z.C. (2022, January 2–3). Life Cycle Impact Assessment And Economic Evaluation of Material Cutting Technologies. Proceedings of the 5th International Conference on Energy and Environment: Bringing Together Engineering and Economics, Porto, Portugal.

4. Energy and Resource Efficiency of Laser Cutting Processes;Kellens;Phys. Procedia,2014

5. Alwis, A.M.L.D., Silva, N.D., and Samaranayake, P. (Benchmarking Int. J., 2023). Industry 4.0-Enabled Sustainable Manufacturing: Current Practices, Barriers and Strategies, Benchmarking Int. J., ahead-of-print.

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