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◆ Journal of Magnesium and Alloys2026-05-01· Friction stir processing

Enhanced corrosion resistance by engineering basal-oriented grains in Mg-Al-Sn-Ca alloys to retard H/O/Cl adsorption through friction stir processing

Dong Xiao-rui, Da-Wei Wang, Rui Zhou, Wei-Chao Zhao, Pin-Kui Ma, Lei Zhao, Min Zha

原始摘要(英文原文)· Original abstract
The present work demonstrates that friction stir processing/welding (FSP/FSW) significantly enhances the corrosion resistance of twin-roll cast (TRC) Mg-Al-Sn-Ca alloy, reducing the corrosion rate to as low as 0.5 mm/y. This improvement arises from a substantial increase in basal-oriented grain fraction (from 12 to 70%) alongside grain refinement and secondary-phase spheroidization. The enriched basal-oriented grains suppress the adsorption of H, O, and Cl, inhibiting key electrochemical processes such as hydrogen evolution, localized oxidation, and chloride-induced pitting corrosion. Importantly, no galvanic corrosion is observed between TRC base metal and FSP zone, highlighting the dual potential of FSP/FSW for both corrosion-resistant surface engineering and structural joining.
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Enhanced corrosion resistance by engineering basal-oriented grains in Mg-Al-Sn-Ca alloys to retard H/O/Cl adsorption through friction stir processing — 科研速览 Science Skim