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Aluminium Matrix Composites Reinforced with Co-continuous Interlaced Phases Aluminium-alumina Needles

机译:共连续交错相增强的铝基复合材料铝-氧化铝针

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An Al-5SiO2 (5 wt% of SiO2) aluminium matrix fiber composite was produced where the reinforcement consists of fossil silica fibers needles. After being heat-treated at 600 °C, the original fiber morphology was retained but its microstructure changed from solid silica to an interconnected (Al-Si)/Al2O3 interlaced structure named co-continuous composite. A technique of powder metallurgy, using commercial aluminium powder and the silica fibers as starting materials, followed by hot extrusion, was used to produce the composite. The co-continuous microstructure was obtained partially or totally on the fibers as a result of the reaction, which occurs during the heat treatment, first by solid diffusion and finally by the liquid Al-Si in local equilibrium, formed with the silicon released by reaction. The internal structure of the fibers was characterized using field emission electron microscope (FEG-SEM) and optical microscopy on polished and fractured samples.
机译:生产了Al-5SiO2(SiO2的5 wt%)铝基纤维复合材料,其中增强材料由化石二氧化硅纤维针组成。在600°C下进行热处理后,仍保留了原始的纤维形态,但其微观结构从固态二氧化硅变为互连的(Al-Si)/ Al2O3交错结构,称为共连续复合物。使用工业铝粉和二氧化硅纤维作为原料的粉末冶金技术,然后进行热挤压,以生产复合材料。由于在热处理过程中发生的反应,部分或全部在纤维上获得了共连续的微观结构,首先是固体扩散,最后是局部平衡的液态Al-Si,由反应释放出的硅形成。使用场发射电子显微镜(FEG-SEM)和光学显微镜对抛光和断裂的样品进行表征,以表征纤维的内部结构。

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