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Microstructure, Thermal, Thermo-mechanical and Fracture Analyses of Hybrid AA2024-SiC Alloy Composites

机译:杂化AA2024-SiC合金复合材料的微观结构,热,热机械和断裂分析

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摘要

This research work aims to investigate the inter-correlation between microstructure, thermal (thermal conductivity, thermo-gravimetric analysis), thermo-mechanical (dynamic mechanical analysis) and fracture characteristics of hybrid AA2024-SiC alloy composites fabricated via semi-automatic stir-casting process, as per standard industrial practice. Silicon Carbide (SiC) particulates of varying amount (0-6 wt%; @ step of 2%) were used to reinforce master batch of AA2024 wrought alloy, Silicon Nitride (Si3N4) and graphite particulates. The thermal conductivity and storage-modulus magnitudes of alloy composites have shown diminishing trend with hard SiC reinforcing phase, while material stability, viscous modulus, damping factor and fracture toughness have shown significant improvement. Uniform dispersion and better interfacial adhesion between matrix-reinforcement were observed from metallographic examination. The XRD analysis identified the different phases of the hybrid alloy composites. The trends in variations of physical, mechanical and tribological properties were supported by microstructure analysis, thermal analysis, thermo-mechanical analysis and fracture analysis.
机译:该研究工作旨在研究通过半自动搅拌铸造制造的混合AA2024-SiC合金复合材料的微观结构,热(导热性,热重分析),热机械(动态机械分析)和断裂特性之间的相关性按照标准工业实践的过程。使用不同量的碳化硅(SiC)颗粒(0-6wt%; @步骤2%)来加强母料AA2024锻工,氮化硅(Si3N4)和石墨颗粒。合金复合材料的导热系数和储存量幅度显示出具有硬质SiC增强阶段的趋势递减,而材料稳定性,粘性模量,阻尼因子和断裂韧性表现出显着的改善。从金相检查观察到基质增强件之间的均匀分散和更好的界面粘附。 XRD分析鉴定了混合合金复合材料的不同相位。通过微观结构分析,热分析,热机械分析和断裂分析支持物理,机械和摩擦学性质变化的趋势。

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