Tribological Behavior of Powder Metallurgy Processed Carbon Nanotube Reinforced Alsi Functionally Graded Materials

Azeem Pasha, B.M. Rajaprakash
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Abstract

Tribological behavior of powder metallurgically processes AlSi-MWCNT functionally graded materials was apparatus with pins on discs was examined. Using a Taguchi design of experiments, the signal-to-noise ratio, the analysis of variance, and an orthogonal array were all used to determine the best testing parameters. Analysis revealed wear loss occurs due to increase in load and sliding distance and reduced with MWCNT increased content in FGM. The composites with 1wt% of FGM exhibited both excellent wear resistance and friction coefficients. Wear mechanisms help in understanding the morphology of worn surfaces. The wear mechanism is dictated by delamination layer and other oxide layers. Overall, the findings showed that AlSi-MWCNT functionally graded materials are regarded as remarkable materials in industries where wear-resistant components are crucial, such as aerospace and automotive engineering
粉末冶金加工碳纳米管增强Alsi功能梯度材料的摩擦学性能
研究了AlSi-MWCNT功能梯度材料的粉末冶金工艺摩擦学性能。采用田口试验设计,采用信噪比、方差分析和正交法确定最佳试验参数。分析表明,磨损损失是由于载荷和滑动距离的增加而发生的,并且随着FGM中MWCNT含量的增加而减少。添加1wt% FGM的复合材料具有良好的耐磨性和摩擦系数。磨损机理有助于理解磨损表面的形貌。磨损机制由脱层层和其他氧化层决定。总体而言,研究结果表明,AlSi-MWCNT功能梯度材料在航空航天和汽车工程等耐磨部件至关重要的行业中被视为卓越的材料
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