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Microstructural characterization and investigation of thermal conductivity behaviour of Al 6061-SiC-Gr hybrid metal matrix composites

机译:Al 6061-SiC-Gr杂化金属基复合材料的组织结构和导热性能研究

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Metal matrix composites have been regarded to be one of the most principal classifications in composite materials. Microstructural analysis and metallography is one of the predominant terms commonly used in the research of materials. The thermal characterization of composite materials has received broad deliberation and has become governing in materials science and engineering. In this paper, the microstructural investigation of Al 6061, silicon carbide (SiC) and graphite (Gr) hybrid metal matrix composites with varying percentage reinforcements 2.5%, 5%, 7.5% and 10% have been carried out. The analysis of these hybrid compositions have been accomplished by using optical microscope, scanning electron microscope and energy dispersive spectroscopy that benefits to accomplish thermal characterization and analysis of composite material. Aluminium based composites reinforced with silicon carbide and graphite particles have been prepared by stir casting technique. It has been observed that, dispersoid concentration of the reinforcements has been homogeneous and negligible porosity has been noticed. The formations of grain boundary, interdendritic segregation, porosity and particle size have been characterized by using scanning electron microscope (SEM) and optical microscope. Elemental characterization has been achieved by using energy dispersive spectroscope (EDS).The investigation of thermal conductivity behaviour of hybrid composites with varying percentage reinforcements at lower proportions have been emphasized.
机译:金属基复合材料被认为是复合材料中最主要的分类之一。显微组织分析和金相学是材料研究中常用的主要术语之一。复合材料的热特性已经得到了广泛的讨论,并且已经成为材料科学和工程领域的主导。在本文中,对具有不同百分比增强剂(分别为2.5%,5%,7.5%和10%)的Al 6061,碳化硅(SiC)和石墨(Gr)杂化金属基复合材料进行了显微组织研究。这些杂化组合物的分析已通过使用光学显微镜,扫描电子显微镜和能量色散光谱学完成,这有利于完成复合材料的热表征和分析。通过搅拌铸造技术已经制备了用碳化硅和石墨颗粒增强的铝基复合材料。已经观察到,增强材料的分散质浓度是均匀的,并且已经注意到孔隙率可以忽略。利用扫描电子显微镜(SEM)和光学显微镜对晶界的形成,枝晶间偏析,孔隙率和粒径进行了表征。通过使用能量色散光谱仪(EDS)实现了元素表征。着重研究了在较低比例下具有不同百分比增强物的杂化复合材料的导热性能。

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