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A novel structure for carbon nanotube reinforced alumina composites with improved mechanical properties

机译:具有改善的机械性能的碳纳米管增强氧化铝复合材料的新型结构

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摘要

Engineering ceramics have high stiffness, excellent thermostability, and relatively low density, but their brittleness impedes their use as structural materials. Incorporating carbon nanotubes (CNTs) into a brittle ceramic might be expected to provide CNT/ceramic composites with both high toughness and high temperature stability. Until now, however, materials fabrication difficulties have limited research on CNT/ceramic composites. The mechanical failure of CNT/ceramic composites reported previously is primarily attributed to poor CNT -matrix connectivity and severe phase segregation. Here we show that a novel processing approach based on the precursor method can diminish the phase segregation of multi-walled carbon nanotubes (MWCNTs), and render MWCNT/alumina composites highly homogeneous. The MWCNTs used in this study are modified with an acid treatment. Combined with a mechanical interlock induced by the chemically modified MWCNTs, this approach leads to improved mechanical properties. Mechanical measurements reveal that only 0.9 vol% acid-treated MWCNT addition results in 27% and 25% simultaneous increases in bending strength (689.6 +/- 29.1 MPa) and fracture toughness (5.90 +/- 0.27 MPa m(1/2)), respectively.
机译:工程陶瓷具有高刚度,出色的热稳定性和相对较低的密度,但其脆性阻碍了其用作结构材料。将碳纳米管(CNT)掺入脆性陶瓷中可望为CNT /陶瓷复合材料提供高韧性和高温稳定性。然而,到目前为止,材料制造方面的困难限制了对CNT /陶瓷复合材料的研究。先前报道的CNT /陶瓷复合材料的机械失效主要归因于不良的CNT-基质连通性和严重的相分离。在这里,我们表明基于前驱物方法的新颖处理方法可以减少多壁碳纳米管(MWCNT)的相分离,并使MWCNT /氧化铝复合材料高度均匀。本研究中使用的MWCNT经过酸处理改性。结合由化学修饰的MWCNT引起的机械互锁,此方法可改善机械性能。机械测量表明,仅添加0.9体积%的酸处理过的MWCNT,弯曲强度(689.6 +/- 29.1 MPa)和断裂韧性(5.90 +/- 0.27 MPa m(1/2))会同时增加27%和25% , 分别。

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