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Carbon nanotubes reinforced aluminum matrix composites with high elongation prepared by flake powder metallurgy

机译:碳纳米管增强铝基基复合材料,用剥落粉末冶金制备的高伸长率

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摘要

High elongation aluminum matrix composites reinforced with carbon nanotubes (CNTs) were prepared by flake powder metallurgy, and densified by hot extrusion with a high extrusion ratio. After hot extrusion, fine and equiaxed grains were obtained in 2 wt% CNT/Al composite, and interfacial product (Al4C3) as well as bridge-connected CNTs aligned along the extrusion direction were found both in 1 wt% CNT/Al and 2 wt% CNT/Al composites. Both composites obtained high elongation while their strength was enhanced. Especially the elongation of 2 wt% CNT/Al composite is comparable to that of pure Al prepared by the same method, which reached about 30%. The good ductility mainly attributes to firm interfacial combination between CNTs and matrix, fine and equiaxed grains formed by dynamic recrystallization during hot extrusion, and bridge-connected CNTs aligned along the extrusion direction.
机译:用剥落粉末冶金制备用碳纳米管(CNT)加强的高伸长型铝基基复合材料,并通过高挤出比通过热挤出致密化。 在热挤出后,在2wt%CNT / Al复合材料中获得细细和等式的晶粒,并且在1wt%CNT / Al和2重量下,发现界面产品(Al 4C3)以及沿挤出方向排列的桥连接的CNT。 %CNT / Al复合材料。 两种复合材料在其强度提高时获得了高伸长率。 特别是2wt%CNT / Al复合材料的伸长率与通过相同方法制备的纯Al的伸长率相当,其达到约30%。 良好的延展性主要属性以在热挤出期间通过动态再结晶形成的CNT和矩阵,细胞和等式晶粒之间的固定互补组合,沿着挤出方向对准的桥接CNT。

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