汽车用贝壳粉增强铝合金的力学、显微组织和磨损性能评价

I. Suleiman, A. Kasim, A. T. Mohammed, M. Z. Sirajo
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引用次数: 3

摘要

本文旨在研究以不同重量百分比(0 wt. %至15 wt. %)间隔3 wt. %的贻贝粉(MSP)增强铝合金的力学(拉伸、硬度、冲击、伸长率)、显微组织和磨损行为。用x射线荧光(XRF)对贻贝粉进行了表征。利用扫描电镜和能量色散能谱分析了贻贝粉颗粒在基体中的分布,研究了基体和复合材料的形貌。采用Taber磨损试验机对不同增强强度的合金和复合材料的磨损性能进行了研究。XRF分析表明,MSP的主要成分为氧化钙(95.70%)、二氧化硅(0.83%)等。力学性能表明,拉伸值随MSP的增加而增加,硬度值从MSP的6 wt %增加到15 wt %。冲击能从3wt %时的42.6 J下降到15wt %时的22.6 J;伸长率也分别从3 wt. % MSP时的37.4%下降到15 wt. % MSP时的20.5%。弯曲应力结果随着配筋率的增加而增加。形貌表明,MSP在基体内均匀分布,提高了材料的力学性能。复合材料的耐磨性随载荷的增加而增加,随MSP重量百分比的增加而降低,可用于汽车工业刹车片和绝缘子的生产。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of Mechanical, Microstructures and Wear Behaviours of Aluminium Alloy Reinforced with Mussel Shell Powder for Automobile Applications
This paper aims to investigate the mechanical (tensile, hardness, impact, elongation), microstructure and wear behaviours of aluminium alloy reinforced with mussel shell powder (MSP) at different weight percentages (0 wt. % to 15 wt. %) at 3 wt. % interval. The mussel shell powder was characterized by X-ray fluorescence (XRF). The matrix and the composites’ morphology were studied using a scanning electron microscope attached with energy dispersive spectroscopy for the distribution of mussel shell powder particles within the matrix. The wear behaviour of the alloy and composites produced at various reinforcements were carried out using a Taber abrasion wear-testing machine. The XRF showed the compositions of MSP to contain calcium oxide (95.70 %), silica (0.83 %) and others. Mechanical properties showed that tensile values increase with increases in MSP, hardness value increases from 6 wt. % to 15 wt. % of MSP. The impact energy decreased from 42.6 J at 3 wt. % to 22.6 J at 15 wt. %; the percentage elongation also decreased from 37.4 % at 3 wt. % to 20.5 % at 15 wt. % MSP, respectively. The bending stress results increase with increases in the percentage of reinforcement. The morphologies revealed that uniform distribution of MSP within the matrix resulted to improvement in mechanical properties. The wear resistance of the composites increases with increase in the applied load and decreases with increases in the weight percentage of MSP and can be used in the production of brake pads and insulators in the automobile industry.
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