Investigation of Influence of Variations of Ageing Conditions on Aluminium-Silicon: Pathway to Tailored Mechanical Properties

Tommy, S. D., Onah, T. O., Aka, C. C.
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Abstract

This study focuses on the investigation of the influence of the variations of ageing conditions on the mechanical properties of ferrosilicon-silicon carbide reinforced Aluminium metal matrix composites. The ageing temperature, reinforcement percentage volume fractions and ageing time of the composite were systematically varied during fabrication stages by keeping the Aluminium and Ferrosilicon compositions constant while varying the percentage volume fractions of Silicon Carbide (SiC). The samples produced were machined into hardness, impact and tensile tests specimens. Then the specimens were subjected to laboratory based accelerated solution heat treatment, quenching and artificial ageing. Array of comprehensive mechanical properties examination and characterization in line with the appropriate specifications of the American Society for Testing and Materials Standard manuals were conducted to determine the influence of ageing on the material’s strength, hardness, impact toughness and stress-strain characteristics. The study revealed significant enhancement in the mechanical properties of the material and the findings would provide valuable insight into the ageing behaviour of Aluminium-Silicon, thus, enabling the optimization of the material’s performance for use in diverse engineering applications.
研究老化条件变化对铝硅的影响:获得定制机械性能的途径
本研究的重点是调查老化条件的变化对硅铁-碳化硅增强铝金属基复合材料机械性能的影响。通过保持铝和硅铁成分不变,同时改变碳化硅(SiC)的体积分数百分比,在制造阶段系统地改变了复合材料的老化温度、增强体体积分数百分比和老化时间。生产出的样品被加工成硬度、冲击和拉伸测试试样。然后对试样进行实验室加速固溶热处理、淬火和人工老化。根据美国材料与试验协会标准手册的相关规范,进行了一系列全面的机械性能检查和表征,以确定时效对材料强度、硬度、冲击韧性和应力应变特性的影响。研究结果表明,材料的机械性能明显增强,这些发现将为了解铝硅材料的老化行为提供宝贵的信息,从而优化材料的性能,使其能用于各种工程应用。
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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