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◆ Optics & Laser Technology2025-10-03· Keyhole

A comprehensive study on the influence of spatial power distribution on time-dependent keyhole behavior in laser beam welding of copper by means of high-speed synchrotron X-ray imaging

Klaus Schricker, Leander Schmidt, Falk Nagel, Christian Diegel, Hannes Friedmann, Marc Seibold, Peter Hellwig, Fabian Fröhlich, Peter Kallage, Yunhui Chen, H. Requardt, Alexander Rack, Jean Pierre Bergmann

原始摘要(英文原文)· Original abstract
• In situ high-speed X-ray imaging reveals process dynamics in copper laser welding. • High spatio-temporal resolution provides novel insights into time-dependent behavior. • Core-ring power distributions allow an adjustment of process dynamics. • Systematic explanation of phenomena that characterize stable and unstable processes. • Development of model concepts for three different process regimes. This paper examines the impact of spatial power distributions on the time-dependent keyhole behavior during laser beam welding of copper using high-speed synchrotron X-ray imaging. The experimental setup utilized a COHERENT HighLight FL8000-ARM fiber laser with concentric intensity distribution created by an optical fiber cable. The European Synchrotron Radiation Facility (ESRF, beamline ID19) was used to conduct high-speed synchrotron imaging at 20,000 images per second to study the spatio-temporal keyhole behavior. Keyhole geometries were extracted through advanced image processing techniques, allowing quantification of parameters like depth, aperture, bulging, and determination of related oscillation frequencies. The results showed that core-dominated processes exhibit significant variations in keyhole geometry. In contrast, ring-dominated processes exhibited reduced penetration depths but increased melt pool dynamics due to altered absorption conditions and increased temperatures within the melt pool. A stabilized core-ring power distribution minimized fluctuations, resulting in improved process stability. The findings were summarized in a model concept describing three characteristic keyhole regimes: core-dominated, ring-dominated, and stabilized core-ring processes.
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A comprehensive study on the influence of spatial power distribution on time-dependent keyhole behavior in laser beam welding of copper by means of high-speed synchrotron X-ray imaging — 科研速览 Science Skim