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- W4285288185 abstract "In the present scenario, lightweight aluminum composites are great flourishing as the compensate of ferrous alloys. Lightweight Al7075 is a castable alloy that has reasonable strength and hardness besides its utilization in automobile, defence, and aerospace fields. The current study focuses on the characterization of Stir cast Al7075–B4C–ZrC reinforced Hybrid Composites. The integration of B4C and ZrC particulates to the Al matrix was processed at various weight % such as 2, 4, 6, and 8. The effects of B4C and ZrC particle content on the microstructure, mechanical, and wear properties were investigated. The morphology of the castings was examined by SEM and XRD. As the proportion of B4C–ZrC2 is increasing in the composite, the hardness and strength are increased. The Al7075/8%B4C/1%ZrC is better than all composites. Wear test was investigated under dry conditions using pin-on-disc apparatus at ambient temperatures at various process parameter conditions. Specific wear rate is gradually increased and the coefficient of friction is gradually decreased against higher sliding distances. The wear resistance of hybrid composites was improved with B4C–ZrC particles and impairment on the worn surface was reduced. The obtained results with 8 wt% B4C have decreased wear rate even with increasing sliding distance and load. On the outset, the incredible mechanical and wear properties of AA7075–B4C–ZrC composites are the best replacement for upper wing applications." @default.
- W4285288185 created "2022-07-14" @default.
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- W4285288185 date "2022-01-01" @default.
- W4285288185 modified "2023-09-26" @default.
- W4285288185 title "Rapid Preparation of Al7075–B4C–ZrC Composites by Conventional Stir Casting Process: Microstructure and Tribological Studies" @default.
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- W4285288185 doi "https://doi.org/10.1007/978-981-19-0244-4_34" @default.
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