Development and Characterization of Al7475/NbC Reniforced Metal Matrix Composites

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Abstract

Aluminium metal matrix composites (AMMCs) have considerable applications in aerospace, automotive and military industries due to their high strength to wear ratio, stiffness, light weight, good wear resistance and improved thermal and electrical properties. Ceramic particles such as Al2O3, SiC are the most widely used materials for reinforcement of aluminium. In the present work, an effort is made to enhance the mechanical properties like tensile strength, compression strength and hardness of AMMCs by reinforcing AL7475 matrix with varying NBC particles sizes. By stir casting route (liquid metallurgical technique) in which amount of reinforcement is varied from 2-8 wt% in steps of 2 wt% for varying reinforcement sizes and specimens are artificially aged. The prepared composites of AL7475-Boron Carbide (NBC) are characterized by microstructural studies, SEM and XRD/EDS analysis will be carried out to analyze the microstructure and the dispersion of the reinforced particles in the alloy matrix, mechanical properties such as Tensile strength, Compression Strength, Density, Tribological Properties and Fracture Toughness as per ASTM Standards. Hypothesis of the present work in particularly to the optimum size of reinforcement and also the results of both with and without heat treatment are compared with that of as cast AL7475 Alloy.
Al7475/NbC增强金属基复合材料的研制与表征
铝金属基复合材料(ammc)由于其高强度磨损比、刚度、重量轻、良好的耐磨性和改进的热电性能,在航空航天、汽车和军事工业中有着相当大的应用。氧化铝、碳化硅等陶瓷颗粒是目前应用最广泛的铝增强材料。在本研究中,通过添加不同粒径的NBC增强AL7475基体,提高了ammc的抗拉强度、抗压强度和硬度等力学性能。通过搅拌铸造路线(液体冶金技术),其中增强量在2-8 wt%之间变化,以2 wt%的步骤为不同的增强尺寸和试样进行人工时效。对制备的al7475 -碳化硼(NBC)复合材料进行了显微组织研究,采用SEM和XRD/EDS分析了增强颗粒在合金基体中的微观组织和分散情况,并按照ASTM标准分析了拉伸强度、抗压强度、密度、摩擦学性能和断裂韧性等力学性能。本文的假设重点是强化的最佳尺寸,并将热处理和不热处理的结果与铸态AL7475合金进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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