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◆ Results in Engineering2026-08-01· Materials science

Crack-free Laser Welding of Tungsten with the Application of Laser Beam Shaping and Laser Beam Oscillations

Thomas Stoll, Maximilian Schmitt, Nandakishor Illam Muraleedhara Sharma, Bharat Mehta, Robert Lürbke, A. von Müller, Jan Reimann, Tatu Pinomaa, Anssi Laukkanen, R. Neu, Eric A. Jägle, Katrin Wudy

原始摘要(英文原文)· Original abstract
In laser processing, such as laser beam welding and Powder Bed Fusion using a laser-based system (PBF-LB/M), tungsten still remains a challenging material due to its cracking phenomena. As the cracking of tungsten in a laser-based process emerges from the high cooling rates, the resulting tensions during solidification, and the involved ductile-to-brittle temperature, this paper addresses the crack elimination with the application of laser process-based approaches such as laser beam shaping and laser beam oscillations. Both strategies show a reduction in the cooling rate, shown with the emergence of an overall bigger grain size compared to the application of a Gaussian beam shape, and also an influence on the solidification morphology. A more pronounced equiaxed grain structure in the fusion zone and a drastic reduction of the oriented grain structure towards the fusion line can be observed. When applying laser beam oscillations, 91 % of 55 parameter combinations using a ring-core-distributed beam shape (with 70 % in the ring and 30 % in the core) resulted in crack-free specimens, while 80 % of 108 tested parameter combinations using a ring-shaped beam profile, and only 36 % of 36 test parameter combinations using a Gaussian beam profile led to crack-free specimens. Therefore, applying laser beam oscillations allows for a reproducibly crack-free manufacture of single weld lines on tungsten sheets.
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Crack-free Laser Welding of Tungsten with the Application of Laser Beam Shaping and Laser Beam Oscillations — 科研速览 Science Skim