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Sensor-Assisted Assessment of the Tribological Behavior Patterns of AA7075 Hybrid MMC Reinforced with Multi-Wall Carbon Nanotubes and Pulverized Fuel Ash

机译:传感器辅助评估多壁碳纳米管和粉煤灰增强的AA7075混合MMC的摩擦学行为模式

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摘要

In recent years, the deployment of sensors and other ancillary technologies has turned out to be vital in the investigation of tribological behavioral patterns of composites. The tribological behavioral patterns of AA7075 hybrid metal matrix composites (MMCs) reinforced with multi-wall carbon nanotubes (MWCNTs), and pulverized fuel ash (PFA) were investigated in this work. The stir casting technique was used to fabricate the composites. The mechanical properties such as tensile strength and hardness were determined for the fabricated material. Besides, microstructure analysis was performed for these AA7075 hybrid MMCs reinforced with MWCNTs and pulverized fuel ash. A pin-on-disc wear testing setup was used to evaluate the wear rate, in which the EN 31 steel disc was used as the counter-face. Taguchi’s design of the experiments was used to optimize the input parameters that impact the characteristics of the hybrid composites, and ANOVA (analysis of variance) was used to determine the contribution of input parameters on the wear behavior. Electrical discharge machining (EDM) was conducted on the AA7075 hybrid metal matrix composites using a copper electrode for determining the material removal rate. These investigations and the results were utilized for determining the optimized output process parameter values of the AA7075 metal matrix composite.
机译:近年来,在研究复合材料的摩擦学行为模式中,传感器和其他辅助技术的部署已变得至关重要。本文研究了多壁碳纳米管(MWCNTs)增强的AA7075杂化金属基复合材料(MMCs)和粉煤灰(PFA)的摩擦学行为模式。使用搅拌铸造技术来制造复合材料。确定了所制造材料的机械性能,例如拉伸强度和硬度。此外,对这些用MWCNT和粉煤灰增强的AA7075混合MMC进行了微结构分析。使用销盘式磨损测试装置来评估磨损率,其中EN 31钢盘用作对面。 Taguchi的实验设计用于优化影响杂化复合材料特性的输入参数,而ANOVA(方差分析)用于确定输入参数对磨损行为的影响。使用铜电极对AA7075杂化金属基复合材料进行放电加工(EDM),以确定材料去除率。这些调查和结果用于确定AA7075金属基复合材料的最佳输出过程参数值。

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