Cold Spray Deposition of Aluminium 6061 Decorated with Al2O3 Nanoparticles

B. Marzbanrad, E. Marzbanrad, H. Jahed
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Abstract

This research presents a novel approach for producing metal matrix composite powders using a nanoparticle decoration technique. A 1wt% stable suspension of 30nm Al2O3 particles was decorated onto primary AA6061using a redispersion method. The resulting AA6061-1wt% Al2O3 composite powder was mixed in a rotary mixer for one hour and subsequently dried at 45°C. Scanning electron microscopy of the composite powder confirmed the successful material composition. The composite powders were then deposited onto an AA6061 substrate using a low-pressure cold spray system, with the coating quality, deposition efficiency, surface roughness, and hardness of the deposited materials analyzed. After heat treatment at 430oC, the role of the nanoparticles in hindering recrystallization was studied, with Orowan strengthening shown to be the main mechanism for preventing recrystallization and grain growth. This technique provides a promising alternative method for producing metal matrix composites and offers potential for further exploration of their properties and applications.
Al2O3纳米颗粒修饰铝6061的冷喷涂沉积
本研究提出了一种利用纳米颗粒修饰技术制备金属基复合材料粉末的新方法。采用再分散的方法,将1wt%稳定的30nm Al2O3颗粒悬浮液装饰在初代aa6061上。将得到的AA6061-1wt% Al2O3复合粉末在旋转混合器中混合1小时,然后在45℃下干燥。复合粉末的扫描电镜证实了成功的材料组成。采用低压冷喷涂系统将复合粉末沉积在AA6061基体上,分析了沉积材料的涂层质量、沉积效率、表面粗糙度和硬度。在430℃热处理后,研究了纳米颗粒对再结晶的抑制作用,发现Orowan强化是抑制再结晶和晶粒长大的主要机制。该技术为生产金属基复合材料提供了一种有前途的替代方法,并为进一步探索其性能和应用提供了潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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