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首页> 外文期刊>Materials >Enhancing Interfacial Bonding and Tensile Strength in CNT-Cu Composites by a Synergetic Method of Spraying Pyrolysis and Flake Powder Metallurgy
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Enhancing Interfacial Bonding and Tensile Strength in CNT-Cu Composites by a Synergetic Method of Spraying Pyrolysis and Flake Powder Metallurgy

机译:喷雾热解与片状粉末冶金协同作用增强CNT-Cu复合材料的界面结合力和拉伸强度

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Carbon nanotube (CNT)-reinforced metal matrix composites (MMCs) face the problems of dispersion and interfacial wetting with regard to the matrix. A synergetic method of spray pyrolysis (SP) and flake powder metallurgy (FPM) is used in this paper to improve the dispersibility and interfacial bonding of CNTs in a Cu matrix. The results of the interface characterization show interface oxygen atoms (in the form of Cu 2 O) and a high density of dislocation areas, which is beneficial for interfacial bonding. The tensile results show that the tensile strength of the SP-CNT-Cu composites is much higher than that of the CNT-Cu composites when the mass fraction of the CNTs does not reach the critical value. This can be explained by the nanoparticles which are found on the surface of the CNTs during the SP process. These nanoparticles not only increase the tensile strength of the SP-CNT-Cu composites but also improve the dispersion of the CNTs in the Cu matrix. Thereby, uniform dispersion of CNTs, interfacial bonding between CNTs and the Cu matrix, and the enhancement of tensile strength are achieved simultaneously by the synergetic method.
机译:碳纳米管(CNT)增强的金属基复合材料(MMC)面临着基体分散和界面润湿的问题。本文采用喷雾热解(SP)和片状粉末冶金(FPM)的协同方法来改善CNT在铜基体中的分散性和界面键合。界面表征的结果显示界面氧原子(以Cu 2 O的形式)和高位错密度的区域,这有利于界面键合。拉伸结果表明,当CNT的质量分数未达到临界值时,SP-CNT-Cu复合材料的拉伸强度远高于CNT-Cu复合材料的拉伸强度。这可以通过SP过程中在CNT表面上发现的纳米颗粒来解释。这些纳米颗粒不仅增加了SP-CNT-Cu复合材料的拉伸强度,而且改善了CNT在Cu基体中的分散性。由此,通过协同方法同时实现了CNT的均匀分散,CNT与Cu基体之间的界面结合以及抗拉强度的提高。

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