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Microstructural Characteristics of Aluminum Based Composites Developed By Liquid Metallurgy Route: An Overview

机译:液态冶金法开发的铝基复合材料的微观结构特征:概述

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The extensive potential engineering applications of Aluminium Metal Matrix Composites (AMCs) are strong motivations for researchers renewed efforts in the development and characterisation of this class of material. The importance of microstructures for AMCs characterisation is enormous for reliable interpretations of its physical, mechanical, corrosion and thermal properties. Hence, a comprehensive review is quintessential in order to have a general overview of the influence and implications of microstructural characteristics on AMCs material properties. The review shows that an improved stir casting setup provides a reliable platform for effective and efficient stirring mechanism in the production of AMCs. This improved system is capable of reducing agglomerations to the barest minimum and thus promotes homogeneous dispersion of ceramic reinforcement particles in the matrix. The nature of AMCs microstructures have specific implications to its mechanical, corrosion and wear properties. The formation of pores, pits, rough surface and ceramics particles agglomerations in AMCs microstructures are manifestations of severe corrosion of the composites in different environments. The microstructural characteristics of corroded composite samples are aggravated by the harshness of the corrosion environments and increase in the percentage weight fractions of most ceramic reinforcement particles. The type of ceramic reinforcement particles used in AMCs has been well reported in the literature to have immense influence on its microstructural characteristics. Further, the review was able to show that heat treatment is a reliable process that can be explored in enhancing the homogeneous dispersion of reinforcement particles in AMCs matrix and its overall microstructural features. This review has enriched researchers’ understanding on immense benefits of AMCs microstructural examinations and its numerous implications. It is hopeful that this will be an illuminating platform for intensifying research activities on the microstructural characterisation of AMCs. The conclusion that can be drawn from this in-depth overview is that microstructural examinations will remain one of the leading techniques for AMCs materials properties characterisation. Optical Microscopy (OM), Scanning Electron Microscopy (SEM), Transmission Electron Microscopy (TEM), Atomic Force Microscopy (AFM), Energy Dispersive Spectroscopy (EDS), X-ray Diffraction (XRD) and X-ray Fluorescence (XRF) will continue to be the domineering microstructural examinations techniques for characterising the material properties of AMCs.
机译:铝金属基复合材料(AMC)在工程上的广泛潜在应用,是促使研究人员在开发和表征此类材料上重新努力的强烈动机。对于AMC表征而言,微结构的重要性对于可靠地解释其物理,机械,腐蚀和热性能至关重要。因此,全面综述是典型的,以便对微结构特征对AMCs材料性能的影响和含义有一个总体概述。审查表明,改进的搅拌铸造设置为AMC生产中的有效搅拌机制提供了可靠的平台。这种改进的系统能够将团聚减少到最低限度,从而促进陶瓷增强颗粒在基体中的均匀分散。 AMC的微结构的性质对其机械,腐蚀和磨损性能具有特定的影响。在AMC的微结构中,孔,坑,粗糙表面和陶瓷颗粒的团聚形成是复合材料在不同环境下严重腐蚀的表现。被腐蚀的复合材料样品的微观结构特征会因腐蚀环境的恶劣而恶化,并且大多数陶瓷增强颗粒的重量百分数增加。在AMC中使用的陶瓷增强颗粒的类型已在文献中得到充分报道,对其微结构特征产生了巨大影响。此外,该评论能够显示出热处理是一种可靠的工艺,可以用来增强增强颗粒在AMCs基质中的均匀分散及其整体微观结构特征。这篇评论丰富了研究人员对AMC微观结构检查的巨大好处及其许多含义的理解。希望这将成为一个启发性的平台,用于加强对AMC的微观结构表征的研究活动。从这个深入的概述中可以得出的结论是,微观结构检查将仍然是AMCs材料特性表征的主要技术之一。光学显微镜(OM),扫描电子显微镜(SEM),透射电子显微镜(TEM),原子力显微镜(AFM),能量色散光谱(EDS),X射线衍射(XRD)和X射线荧光(XRF)继续成为表征AMC材料特性的主导显微组织检查技术。

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