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Investigation on Effect of Fly Ash Volume Percentage on Microstructure and Microhardness of AA7075-Fly Ash Surface Composites via FSP

机译:粉煤灰体积百分比对AA7075 - 粉煤灰表面复合材料微观结构和微硬度的影响

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In this study, friction stir processing (FSP) technique is used to fabricate aluminium AA7075 alloy reinforced with fly ash (FA) metal matrix composites (MMCs). The cheap and abundantly available industrial-waste fly ash (FA) microp-owder is used as a reinforcing medium. The main focus of this study is to find out the optimal volume percentage that will bring out good mechanical properties on the selected base metal AA7075. The surface blind holes method is used for depositing the FA particles, and inter-cavity spacing is utilized as a parameter to control the volume percentage. For inter-cavity spacing of 4 mm (S1), 6 mm (S2), 8 mm (S3), and 10 mm (S4), the volume percentages of FA particles to be inserted are 2%, 4%, 6%, and 8%, respectively. After producing the MMCs, the microhardness and tensile tests have been conducted to study the mechanical properties of the MMCs. The microstructural analysis of Al 7075-FA MMCs has been conducted using field emission scanning electron microscopy (FESEM). The highest average microhardness value 178 HV and the highest UTS 240 MPa are observed for the sample of S-2 combination. The microstructural observations confirm that breaking of FA microparticles and their more uniform distribution facilitates grain refinement which contributes to obtain enhanced microhardness and tensile strength. The FESEM-EDX and mapping confirm the presence of FA micropowder in the form of silicon oxide and other constituents.
机译:在该研究中,摩擦搅拌加工(FSP)技术用于制造铝AA7075合金用粉煤灰(FA)金属基复合材料(MMC)加固。廉价且丰富的工业废物粉煤灰(FA)MICROP-OUDDER用作加强介质。本研究的主要焦点是找出最佳的体积百分比,将在所选底座金属AA7075上带出良好的机械性能。表面盲孔方法用于沉积FA颗粒,并且腔间间隔用作控制体积百分比的参数。对于4mm(S1),6mm(S2),8mm(S3)和10mm(S4)的间隔间隔,待插入的FA颗粒的体积百分比为2%,4%,6%,和8%。在生产MMC后,已经进行了微硬度和拉伸试验以研究MMC的机械性能。使用现场发射扫描电子显微镜(FESEM)进行了Al 7075-FAMCS的微观结构分析。对于S-2组合的样品,观察到最高的平均微硬度值178HV和最高UTS 240MPa。微观结构观察证明了FA微粒的破碎及其更均匀的分布有助于获得增强的微硬度和拉伸强度的晶粒细化。 FeSEM-EDX和映射确认了氧化硅和其他成分形式的FA微隆的存在。

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