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The Influence of Technological Parameters on the Contrast of Copper Surfaces in the Laser Marking Process
Lyubomir Lazov1, Edmunds Teirumnieks1, Emil Yankov1
1Engineering Center, RTU Rezekne Academy, 4601 Rezekne, Latvia.
Abstract:
This study examines the influence of key technological parameters-marking speed, raster step (Δx), pulse duration, power density, and effective energy-on the laser marking of copper using Yb-doped fiber and CuBr MOPA lasers. Two experimental setups were used: the fiber laser, with 100 ns and 200 ns pulses, and the CuBr laser with 30 ns pulses. Marking speed ranged from 10 to 80 mm/s, with raster steps from 3 to 20 µm for the fiber laser and 3 to 27 µm for the CuBr laser. The study compares different pulse durations and evaluates the impact of laser wavelength on the marking process. Optimal effective energy ranges were identified: 17.4-43.1 kJ/cm2 for the Yb-doped fiber laser and 9.90-43.1 kJ/cm2 for the CuBr laser. The originality of this work lies in its direct comparison of Yb-doped fiber and CuBr MOPA lasers for copper marking, alongside the simultaneous optimization of multiple parameters. The study provides novel guidelines for high-contrast copper marking, a material with known laser-processing challenges. The identified optimal energy ranges and process parameters can significantly improve the efficiency and quality of industrial copper marking applications.

