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Active coatings for SiC particles to reduce the degradation by liquid aluminium during processing of aluminium matrix composites: study of interfacial reactions

机译:SiC颗粒的活性涂层,可减少铝基复合材料加工过程中液态铝的降解:界面反应的研究

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摘要

The application of a surface coating on SiC particles is studied as an alternative means of solving problems of reactivity between SiC reinforcements and molten aluminium and problems of low wetting which limit the application of casting routes for fabrication of Al-SiCp composites. The selected active barrier was a ceramic composed of SiO2, which was generated by controlled oxidation of the SiC particles. The coating behaves as an active barrier, preventing a direct reaction between molten aluminium and SiC to form Al4C3 as the main degradation product. At the same time, the SiO2 provokes other interfacial reactions, which are responsible for an improvement in wetting behaviour. Composites were prepared by mixing and compacting SiC particles with Al powders followed by melting in a vacuum furnace, and varying the residence time. Transmission electron microscopy (TEM), high resolution electron microscopy (HREM) and field emission TEM were employed as the main characterization techniques to study the interfacial reactions occurring between the barrier and the molten aluminium. These studies showed that the SiO2 coating behaves as an active barrier which reacts with the molten Al to form a glassy phase Al-Si-O. This compound underwent partial crystallization during the composite manufacture to form mullite. The formation of an outer crystalline layer, composed mainly of Al2O3, was also detected, Participation of other secondary interface reactions inside the active barrier was also identified by HREM techniques. [References: 21]
机译:研究了在SiC颗粒上应用表面涂层作为解决SiC增强材料与熔融铝之间的反应性问题和低润湿性问题的替代方法,这些问题限制了铸造路线在制造Al-SiCp复合材料中的应用。选择的有源势垒是由SiO2组成的陶瓷,该陶瓷是通过SiC颗粒的受控氧化生成的。该涂层起着主动屏障的作用,防止熔融铝和SiC之间直接反应形成Al4C3作为主要降解产物。同时,SiO 2引起其他界面反应,这有助于改善润湿性能。通过将SiC颗粒与Al粉混合并压实,然后在真空炉中熔化,并改变停留时间来制备复合材料。透射电子显微镜(TEM),高分辨率电子显微镜(HREM)和场发射TEM被用作研究阻挡层与熔融铝之间发生界面反应的主要表征技术。这些研究表明,SiO2涂层起到了与熔融Al反应形成玻璃相Al-Si-O的活性屏障的作用。该化合物在复合材料生产过程中经历了部分结晶,从而形成莫来石。还检测到主要由Al2O3组成的外部结晶层的形成,还通过HREM技术确定了有源势垒内部其他次要界面反应的参与。 [参考:21]

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