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The use of cryogenic milling to prepare high performance Al2009 matrix composites with dispersive carbon nanotubes

机译:利用低温研磨制备具有分散碳纳米管的高性能Al2009基复合材料

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Al2009 matrix composites reinforced with highly dispersive carbon nanotubes (CNTs) were prepared by cryogenic milling combined with powder metallurgy, the structure evolution of CNTs during preparation and the mechanical properties of composites were investigated. The results show that short CNTs with uniform distribution were obtained in aluminum powders through cryomilling. Most CNTs retained tubular structure in composites except only minimal ones reacted with aluminum and formed Al4C3. The dispersity of CNTs in composites gradually decreased with rising addition, and limited dispersion was found when CNTs content reached at 1.5 wt.%. The ultimate tensile and yield strength of 1.0 wt.% CNTs/2009 composite at natural aged condition were 560 MPa and 443.3 MPa respectively, which enhanced 25% and 24% compared to Al2009 aluminum alloy prepared by the same process. Moreover, it still showed good ductility with elongation of 10.2%. The cryogenicmilling is promising to prepare homogeneously distributed carbon nanotubes reinforced composites with high performance. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通过低温研磨与粉末冶金相结合的方法制备了高分散性碳纳米管增强的Al2009基复合材料,研究了碳纳米管在制备过程中的结构演变以及复合材料的力学性能。结果表明,通过低温研磨在铝粉中获得了分布均匀的短碳纳米管。大多数碳纳米管保留了复合材料中的管状结构,只有极少数的碳纳米管与铝反应形成了Al4C3。随着添加量的增加,复合材料中碳纳米管的分散性逐渐降低,当碳纳米管含量达到1.5 wt。%时,发现其分散性有限。在自然时效条件下,1.0 wt。%CNTs / 2009复合材料的极限拉伸强度和屈服强度分别为560 MPa和443.3 MPa,与通过相同方法制备的Al2009铝合金相比,提高了25%和24%。此外,它仍显示出良好的延展性,伸长率为10.2%。低温研磨有望制备高性能的均匀分布的碳纳米管增强复合材料。 (C)2016 Elsevier Ltd.保留所有权利。

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