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Characterization and mechanical response of novel Al-(Mg-TiFe-SiC) metal matrix composites developed by stir casting technique

机译:搅拌铸造技术开发的新型Al-(Mg-Tife-SiC)金属基复合材料的表征与机械响应

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摘要

This study was conducted to investigate the synthesis, characterization and mechanical properties of aluminium reinforced with ferrotitanium and silicon carbide via stir casting technique. Microstructures of as-cast samples were analysed using optical and scanning electron microscopes equipped with energy-dispersive X-ray spectroscopy. The mechanical properties in terms of hardness, tensile, tribological behaviour and fracture were assessed. Results showed that the homogeneous dispersion of reinforcement was within the metal matrix composite. Tribological study revealed a decrease in frictional coefficient of the composites with lowest frictional coefficient observed in composite with addition of silicon carbide as reinforcement. Morphology of fractured surface displayed a reduction in the size of dimples formed in reinforced aluminium composites when compared with larger dimple sizes observed in as-cast aluminium alloy.
机译:通过搅拌铸造技术研究了通过搅拌铸造技术研究了用铁耐锰和碳化硅加固的合成,表征和力学性能。 使用配备有能量分散X射线光谱的光学和扫描电子显微镜分析了铸造样品的微观结构。 评估硬度,拉伸,摩擦学行为和骨折方面的机械性能。 结果表明,增强件的均匀分散在金属基质复合物中。 摩擦学研究揭示了复合材料的摩擦系数降低,该复合材料在复合材料中观察到的复合系数,加入碳化硅作为加固。 与在以铸铝合金中观察到的较大的凹槽尺寸相比,裂缝表面的形态显示在增强铝复合材料中形成的凹坑的尺寸。

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