Development and Characterization of Carbon Nanotube Reinforced Aluminium-6061 Metal Matrix Composites

K. Preethi, Raju T.N, Shivappa H.A
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引用次数: 1

Abstract

An emerging class of new materials is being developed with carbon nanotubes as reinforcements for Al6061 matrix material resulting in CNT-MMC composite materials. To maximize tensile strength and electrical conductivity properties of CNT materials and for the MMCs to possess optimal properties, some synthetic techniques are developed. Care is taken to ensure that these techniques are economical in production, provide uniform reinforcement dispersion in the matrix and also realize strong coherence adhesion of the CNT reinforcements and Al-6061 matrix material. Aluminum reinforced with CNT via powder metallurgy (PM) technique can provide a very distinct advantage. The primary drive and distinct advantage in adopting aluminum is lightweight in comparison to metal and wood composites. Besides weight savings, non-corrosive, flexible, resistance to dent, low on maintenance cost and design flexibility are the highlights of aluminum. Aluminum has wide range of application in industries because of their low density, good workability and relatively low yield strength; whereas reinforcement adds rigidity and impedes crack propagation to a great extent. Thin fibers are used as reinforcement since they possess very high strength with improved overall properties, whereas CNT has a number of invaluable and unique properties in comparison to other fibers used as reinforcement. Due to the reinforcement of CNT in aluminum, the resultant composite possesses high strength to weight ratio. In this work, the CNTs used as reinforcement with varying weight % of 1, 1.5, 2 and Al6061 alloy as a matrix material. The composites were fabricated through powder metallurgy route. Ball milling was done to get homogeneous dispersion of CNT’s. Samples were prepared as per ASTM standards for various compositions and investigated for microstructure using scanning Electron microscopy (SEM). The mechanical properties like hardness were evaluated by Micro Vickers hardness tester and compression strength by Universal Testing Machine. The expected improvements in micro hardness and compressive strength of the MMC s were achieved.
碳纳米管增强铝-6061金属基复合材料的研制与表征
碳纳米管作为Al6061基体材料的增强材料,形成了碳纳米管- mmc复合材料。为了最大限度地提高碳纳米管材料的抗拉强度和导电性,并使碳纳米管材料具有最佳的性能,人们开发了一些合成技术。注意确保这些技术在生产中是经济的,在基体中提供均匀的增强分散,并实现CNT增强和Al-6061基体材料的强相干附着力。通过粉末冶金(PM)技术用碳纳米管增强铝具有非常明显的优势。与金属和木材复合材料相比,采用铝的主要动力和明显优势是重量轻。除了重量轻,无腐蚀性,灵活,抗凹痕,低维护成本和设计灵活性是铝的亮点。铝因其密度低、和易性好、屈服强度较低而在工业上有广泛的应用;而钢筋则在很大程度上增加了刚度并阻碍了裂纹的扩展。薄纤维被用作增强材料,因为它们具有非常高的强度和改进的整体性能,而碳纳米管与用作增强材料的其他纤维相比具有许多宝贵和独特的性能。由于碳纳米管在铝中的增强,所得复合材料具有高强度重量比。在本研究中,采用了不同重量% 1、1.5、2的CNTs作为增强材料和Al6061合金作为基体材料。采用粉末冶金工艺制备复合材料。采用球磨法制备碳纳米管均匀分散。按照ASTM标准制备各种成分的样品,并使用扫描电子显微镜(SEM)研究其微观结构。采用显微维氏硬度计和万能试验机分别对材料的硬度、抗压强度等力学性能进行了测试。在显微硬度和抗压强度方面取得了预期的改善。
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