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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Fabrication of 2014 aluminum matrix composites reinforced with untreated and carboxyl-functionalized carbon nanotubes
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Fabrication of 2014 aluminum matrix composites reinforced with untreated and carboxyl-functionalized carbon nanotubes

机译:未经处理和羧基官能化碳纳米管增强的2014年铝基复合材料的制备

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2014 aluminum matrix composites reinforced with untreated (P-CNTs) and carboxyl-functionalized carbon nanotubes (C-CNTs) were successfully fabricated by the combination of sintering and hot extrusion. It is revealed that the C-CNTs are easier to disperse compared to the P-CNTs. Interfacial analysis indicated that a thin layer of aluminum carbide (Al4C3) exists at the interface between the matrix and the P-CNTs. However, no obvious transition layers of Al4C3 were observed at the interface of C-CNTs and 2014Al matrix in composites. Also, no preferred interfacial crystallographic orientation relationship between the C-CNTs and aluminum matrix was observed. Furthermore, C-CNTs have a larger effective interfacial contact with aluminum matrix compared to the untreated CNTs, due to large amount of -COOH group and defects on the surface of the C-CNTs interacting with Al by strong chemical and physical interactions. These aspects in turn affect the mechanical properties of the composites. The ultimate tensile strength of the composites were raised from 530 to 600 and 630 MPa with 0.5 wt.% of P-CNTs and C-CNTs, respectively. It reveals that the C-CNTs are more effective in strengthening the aluminum matrix than the P-CNTs. (C) 2016 Elsevier B.V. All rights reserved.
机译:通过烧结和热挤压相结合的方法成功地制备了2014年未经处理的增强铝基复合材料(P-CNTs)和羧基官能化的碳纳米管(C-CNTs)。揭示了与P-CNT相比,C-CNT更易于分散。界面分析表明,在基质与P-CNT之间的界面处存在一层薄薄的碳化铝(Al4C3)。然而,在复合材料的C-CNT和2014Al基体的界面上没有观察到明显的Al4C3过渡层。另外,未观察到C-CNT与铝基质之间的优选的界面晶体学取向关系。此外,由于大量的-COOH基团和通过强化学和物理相互作用与铝相互作用的C-CNT表面上的缺陷,与未处理的CNT相比,C-CNT与铝基体具有更大的有效界面接触。这些方面继而影响复合材料的机械性能。用0.5重量%的P-CNT和C-CNT分别将复合材料的极限拉伸强度从530MPa提高到600和630MPa。结果表明,C-CNT在增强铝基体方面比P-CNT更有效。 (C)2016 Elsevier B.V.保留所有权利。

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