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Material-specific beam-plume interactions during deep-penetration laser welding of stainless steel, aluminum, and copper

, , , , , , , and . Journal of Advanced Joining Processes, (June 2026)
DOI: 10.1016/j.jajp.2025.100366

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Material-specific beam-plume interactions during deep-penetration laser welding of stainless steel, aluminum, and copper, , , , , , , and . Journal of Advanced Joining Processes, (June 2026)Characterizing the effect of the vapor plume on laser beam characteristics during laser beam welding, , , , , , , , and . High-Power Laser Materials Processing : Applications, Diagnostics, and Systems XIII, 12878, page 1287809. SPIE, (2024)Laser beam quality welds : Learning from other processes, , , , , , and . 12th CIRP Conference on Photonic Technologies [LANE 2022], 111, page 401-404. Elsevier, (2022)Laser beam quality welds – Learning from other processes, , , , , , and . Procedia CIRP, (2022)Laser-plume interactions in deep-penetration remote laser welding of stainless steel, , , , , , , , and . Optics & laser technology, 186 (August): 112678 (2025)Proof of concept to analyze process emissions during laser beam welding at different ambient pressures, , , , and . Procedia CIRP, (2022)Characterization of particles inside the metal vapor plume during laser beam welding in atmosphere and vacuum, , , , , , , and . Vacuum, 233 (March): 113964 (2024)IN SITU INVESTIGATION OF THE CAPILLARY DYNAMICS IN ELECTRON BEAM WELDING USING THE POLARIZED THERMAL PROCESS EMISSION, , , , , and . (2022)Characterization of particles inside the metal vapor plume during laser beam welding in atmosphere and vacuum, , , , , , , and . Vacuum, (March 2025)Interdependence of metal vapor plume and melt pool dynamics during laser beam welding under vacuum, , , , , , , and . Journal of laser applications, 36 (4): 042008 (2024)