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首页> 外文期刊>Materials Science and Engineering. B, Solid-State Materials for Advanced Technology >Structural characterization and frictional properties of carbon nanotube/alumina composites prepared by precursor method
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Structural characterization and frictional properties of carbon nanotube/alumina composites prepared by precursor method

机译:前驱体法制备碳纳米管/氧化铝复合材料的结构表征和摩擦性能

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摘要

Multi-walled carbon nanotube (MWCNT)/Al_2O_3 composites with MWCNTs content up to 10 mass% were prepared by precursor method. XRD analysis revealed that MWCNT/Al_2O_3 composites were successfully synthesized by the dehydration of aluminum hydroxide-MWCNTs mixture at 1500 ℃ in vacuum. The steady-state friction coefficient (μ) of the composites decreased with increasing up to 4 mass% MWCNT and stayed constant (μ = 0.33) with further addition of MWCNT, which value was substantially lower than that of MWCNT-free monolithic Al_2O_3 (μ = 0.57). Microstructural observations showed that resultant friction behavior may be related to the smearing of transferred film over the contact area, which was expected to permit easy shear and then help to achieve a lubricating effect during sliding. However, fracture property tests have shown that no improvement of the fracture strength and fracture toughness of the composites was achieved by addition of MWCNTs. It may be mainly due to the agglomeration of MWCNTs and the weak interface between MWCNTs and the Al_2O_3 matrix.
机译:采用前驱法制备了多壁碳纳米管(MWCNT)/ Al_2O_3复合材料,MWCNTs含量最高为10质量%。 XRD分析表明,氢氧化铝-MWCNTs混合物在1500℃下真空脱水,成功合成了MWCNT / Al_2O_3复合材料。复合材料的稳态摩擦系数(μ)随MWCNT的增加而增加,直至增加至4质量%,并随着进一步添加MWCNT保持恒定(μ= 0.33),该值大大低于不含MWCNT的整体式Al_2O_3(μ = 0.57)。微观结构观察表明,所产生的摩擦性能可能与转移膜在接触区域上的污迹有关,这有望使剪切容易,然后有助于在滑动过程中达到润滑效果。然而,断裂性能测试表明,通过添加MWCNT,复合材料的断裂强度和断裂韧性没有得到改善。这可能主要是由于MWCNT的团聚以及MWCNT与Al_2O_3基体之间的界面较弱。

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