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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Regulation of interface between carbon nanotubes-aluminum and its strengthening effect in CNTs reinforced aluminum matrix nanocomposites
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Regulation of interface between carbon nanotubes-aluminum and its strengthening effect in CNTs reinforced aluminum matrix nanocomposites

机译:碳纳米管 - 铝与CNTS增强铝基纳米复合材料中碳纳米管与强化效应的调节

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Carbon nanotubes (CNTs) are popular as the chosen reinforcement to achieve excellent mechanical and functional performance in aluminum matrix nanocomposites (AMNCs). However, the key bottleneck problems restrict the strengthening effect using CNTs in AMNCs due to the dispersion homogeneity of CNTs, the distinct differences in physical properties, poor wettability and interface bonding between CNTs and aluminum matrix. This study aims to address these key issues by introducing a continuous SiC nano layer on CNTs surface synthesized from carbon-silicon reaction, acting as a compatibility transition layer prior to mixing with aluminum powders. The results clearly show that the SiC cladding layer provides a good wettability and strong interfacial bonding between CNTs and aluminum matrix, and the interfacial reaction between CNTs and aluminum matrix could be effectively regulated. It is also conducive to reducing the mass density difference and specific surface energy, improving the dispersion of CNTs in matrix. Those factors make a strong contribution to the strengthening effect of CNTs enforcement by achieving high load transfer efficiency. The AMNCs reinforced by this new CNTs/SiC composite powder show clear improvement of mechanical performance without compromising in ductility and electrical conductivity, as compared to AMNCs reinforced by only CNTs or SiC. (C) 2019 Elsevier Ltd. All rights reserved.
机译:碳纳米管(CNT)作为所选增强件流行,以在铝基质纳米复合材料(AMNC)中实现优异的机械和功能性能。然而,关键瓶颈问题由于CNT的分散均匀性,在AMNC中使用CNT来限制强化效果,物理性质的明显差异,CNT和铝基质之间的互补性和界面粘合不良。本研究旨在通过在与碳 - 硅反应合成的CNTS表面上引入连续的SiC纳米层来解决这些关键问题,用作与铝粉末混合之前的相容性转变层。结果清楚地表明,SiC包层层提供CNT和铝基质之间的良好润湿性和强界面键合,并且可以有效地调节CNT和铝基质之间的界面反应。它还有利于降低质量密度差异和特异性表面能,从而改善CNT在基质中的分散。这些因素通过实现高负荷转移效率对CNTS实施的加强效力产生了强烈贡献。通过这种新的CNT / SiC复合粉末增强的AMNC表明,由于仅由CNT或SIC加固的AMNC相比,在不损害延展性和导电性的情况下显然改善了机械性能。 (c)2019年elestvier有限公司保留所有权利。

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