DOE OSTI · 3375949
Towards High-Speed friction stir welding of 25 mm Thick AA2139-T8: tool innovation and process development
Abstract
Joining thick plates (≥ 12 mm) of aluminum (Al) alloys is challenging due to high tool forces, uneven material flow, and non-uniform heat distribution through the material’s thickness. Recent advancements in tool design and welding parameters for friction stir welding (FSW) in thick plates butt joining have encountered a developmental plateau, highlighting the need for innovative approaches to overcome existing limitations. Here, this study focuses on the systematic development of single-pass and double-pass FSW processes for high-strength aluminum alloy AA2139-T8, to improve joint efficiency and enable high-speed welding capabilities. Experimental evidence is presented for a novel tool design with opposing pin threads, enabling high-speed (178 mm/min) single-pass friction stir butt welding of 25 mm thick AA2139-T8. A series of FSW trials was conducted both in air and with a trailing water spray, using steel backing plates (BPs) to investigate the impact of quenching and cooling rates on process response and joint performance. A joint efficiency of 83% was attained using the novel tool features and effectively controlling process forces and thermal boundary conditions.
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Das, Hrishikesh [Pacific Northwest National Laboratory (PNNL), Richland, WA (United States)], Upadhyay, Piyush [Pacific Northwest National Laboratory (PNNL), Richland, WA (United States)], Okeke, Uchechi C. [Naval Surface Warfare Center (NSWC), West Bethesda, MD (United States). NSWC Carderock Division], McDonnell, Martin M. [Army Combat Capability Development Center, Warren, MI (United States)], Reza-E-Rabby, Md. [Pacific Northwest National Laboratory (PNNL), Richland, WA (United States)] (ORCID:0000000175090395). 2026-01-09. Towards High-Speed friction stir welding of 25 mm Thick AA2139-T8: tool innovation and process development. https://doi.org/10.1007/s00170-025-17090-6
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