铜含量对碳纳米管增强铝铜基复合泡沫组织结构与压缩性能的影响

    Effects of Cu Content on Microstructure and Compressive Properties of Carbon Nanotubes Reinforced Al-Cu Matrix Composite Foams

    • 摘要: 适当的添加合金元素是提升铝基复合泡沫力学性能的有效途径。采用粉末冶金发泡法制备了碳纳米管(CNTs)增强铝铜基(CNTs/Al-Cu)复合泡沫,研究不同Cu含量对CNTs/Al-Cu复合泡沫宏观泡孔形貌、微观组织、准静态压缩性能及变形模式的影响,并进一步结合压缩断口形貌分析其断裂失效机制。结果表明:随着Cu含量的增加,CNTs/Al-Cu复合泡沫的力学性能呈现先增加后降低的趋势;适当添加Cu(3wt%)可以有效优化泡孔形貌,促进细晶区的形成并在晶界处形成金属间化合物,进而提升复合泡沫的压缩力学性能。相较Cu含量为2wt%的CNTs/Al-Cu复合泡沫,其屈服强度、平台应力以及吸能能力分别提升了18.0%、33.0%与39.5%。此外,适当的加入Cu会改变复合泡沫的压缩变形模式,并表现出良好的韧性,实现强韧结合。

       

      Abstract: Appropriate addition of alloying elements is an effective way to enhance the mechanical properties of aluminum matrix composite foams. The powder metallurgy foaming method was used to prepare carbon nanotubes(CNTs)reinforced Al-Cu matrix(CNTs/Al-Cu) composite foams, and the effect of Cu content on the pore morphology,microstructure, quasi-static compressive mechanical properties, energy-absorption properties was investigated, as well as deformation modes. The fracture failure mechanism was analyzed by the compression fracture morphology. The results show that, with the increase of Cu content, the mechanical properties of the composite foams show a tendency to increase first and then decrease. The appropriate addition of Cu(3 wt%) can effectively optimize the pore morphology, promote the formation of fine grain zones and formation of intermetallic compounds at grain boundaries, thereby enhancing the compressive mechanical properties of the composite foams. Compared to Cu content of 2 wt%, the yield strength, plateau stress and energy absorption capacity increase by 18.0%, 33.0% and 39.5%, respectively. Additionally, the appropriate addition of Cu alters the compressive deformation mode of the composite foams and presents the combination of strengthening and toughening.

       

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