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Microstructure and Thermal Conductivity of Al–Graphene Composites Fabricated by Powder Metallurgy and Hot Rolling Techniques

机译:粉末冶金和热轧技术制造的Al-石墨烯复合材料的微观结构和导热系数

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摘要

The objective of this research is to improve the thermal conductivity and mechanical properties of Al/GNPs nanocomposites produced by classical powder metallurgy and hot rolling techniques. The microstructural evaluation confirms the uniform dispersion of GNPs at low content and agglomeration at higher contents of GNPs. The structure of graphene was studied before and after the mixing and the Raman spectra proofs that the wet mixing has a great potential to be used as a dispersion method. There is no significant peak corresponding to the Al4C3 formation in both the DSC curves and XRD patterns. The microstructural observation in both fabrication techniques shows grain refinement as a function of GNPs content. Moreover, it is revealed that the introduction of the GNPs not only improves the Vickers hardness of composite, but also decreases the density of the composites. The thermal conductivity investigations show that in both of press-sintered and hot-rolled samples, although the thermal conductivity of composites is improved at low GNPs content, but it was negatively affected at high GNPs content..
机译:本研究的目的是提高通过经典粉末冶金和热轧技术生产的Al / GNP纳米复合材料的导热性和力学性能。微观结构评估证实GNP在低含量和GNPS含量较高含量下的均匀分散。在混合之前和之后研究了石墨烯的结构,拉曼光谱样张的湿式混合具有较大的电位作为分散方法。在DSC曲线和XRD图案中,没有显着的峰值对应于AL4C3形成。两种制造技术中的微观结构观察显示了作为GNPS含量的函数的晶粒细化。此外,揭示了GNP的引入不仅改善了复合材料的维氏硬度,而且还降低了复合材料的密度。导热性研究表明,在压烧烧结和热轧样品中,尽管复合材料的导热系数在低GNPS含量下得到改善,但在高GNPS内容下受到负面影响。

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