AA6061及其复合材料冲击吸能研究:后时效冷却方法的作用

G.V. Krishna Reddy, B. K. Naveen Kumar, G. Hareesha, A. M. Rajesh, Saleemsab Doddamani
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引用次数: 0

摘要

Al6061及其复合材料广泛应用于要求高强度和抗冲击性的应用中。热处理,特别是时效处理,是提高这些复合材料机械性能的一种行之有效的方法。然而,时效后冷却方式对Al6061及其复合材料冲击能量吸收能力的影响尚不清楚。本研究旨在研究Al6061及其复合材料在460℃时效2小时后,采用炉冷、风冷、水冷等不同冷却方式对冲击能的吸收。基于田口的实验设计,采用搅拌铸造技术制备了不同重量分数的石墨和SiC颗粒复合材料。夏比冲击试验是用专门的试验机进行的。结果表明,时效处理后的冷却方式对复合材料的冲击能吸收能力有影响。与其他冷却方法相比,炉冷却显示出最高的冲击能量吸收能力,与整体铝合金相比增加了28%。此外,复合材料的冲击能吸收能力并没有随着SiC颗粒质量分数的增加而提高,而石墨的加入反而对复合材料的冲击能吸收能力产生了负面影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of Impact Energy Absorption of AA6061 and Composites: Role of Post-Aging Cooling Methods
Al6061 and its composites are widely employed in applications requiring high strength and impact resistance. Heat treatment, particularly ageing, is a well-established method for enhancing the mechanical properties of these composites. However, the influence of post-ageing cooling methods on the impact energy absorption capacity of Al6061 and its composites remains inadequately understood. This investigation aims to examine the impact energy absorption of Al6061 and its composites after ageing at 460°C for 2 hours, employing different cooling methods, including furnace cooling, air cooling, and water cooling. The composites were produced using the stir casting technique with varying weight fractions of graphite and SiC particles based on Taguchi's design of experiments. Charpy impact tests were conducted using a specialised testing machine. The results reveal that the impact energy absorption capacity of the composites is influenced by the cooling method employed after the ageing treatment. Furnace cooling demonstrated the highest impact energy absorption capacity compared to the other cooling methods, exhibiting a 28% increase compared to the monolithic aluminium alloy. Furthermore, it was observed that the impact energy absorption capacity of the composites did not improve with an increase in the weight fraction of SiC particles, while the addition of graphite negatively impacted the absorption capacity.
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