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Encapsulation and microwave hybrid processing of Al 6061-Graphene-SiC composites

机译:Al 6061-石墨烯复合材料的封装和微波杂化处理

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摘要

The demand for new aluminum alloy-based metal matrix composites with combinations of novel reinforcements, processed through innovative methods are very much needed for critical engineering applications. With this perspective, the current research work is aimed at the development of Al 6061 composites reinforced with two-dimensional Graphene nanoflake-encapsulated SiC. Ultrasonic liquid processing method is used to disperse the Graphene flake and the mixture is ball milled by adding SiC to achieve the encapsulation. Subsequently, the Al 6061 powder is added to the milled mixture and consolidated through uniaxial vacuum hot press followed by microwave hybrid sintering. Scanning electron microscope (SEM) analysis, X-ray diffraction analysis, hardness, density, and microstructure analysis were carried out on developed composites. Raman analysis was carried out to analyze the distortion on Graphene physical structure during various processing stages. Further, effects on novel combination of material with combined processing approach on flexural and tribological behavior have been analyzed.
机译:对于关键工程应用,非常需要对新型增强材料组合的新型增强材料组合的新型加固铝合金基层复合材料。通过这种观点,目前的研究工作旨在开发与二维石墨烯纳米酚包封的SiC增强的Al 6061复合材料。超声液处理方法用于分散石墨烯片,并通过加入SiC来实现混合物以实现封装。随后,将Al 6061粉末加入到研磨的混合物中并通过单轴真空热压机固结,然后通过微波杂化烧结。扫描电子显微镜(SEM)分析,在开发的复合材料上进行X射线衍射分析,硬度,密度和微观结构分析。进行拉曼分析,以分析各种处理阶段的石墨烯物理结构上的变形。此外,已经分析了对具有组合处理方法对弯曲和摩擦学行为的材料的新组合的影响。

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