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Microstructure and ablation mechanism of graphite/SiC composites under oxy-acetylene flame

机译:氧/乙炔火焰下石墨/ SiC复合材料的显微组织和烧蚀机理

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摘要

Graphite/SiC composites were prepared by reactive metal infiltration (RMI). The microstructure and the ablation mechanism under oxy-acctylenc flame were investigated. The ablation surface was composed of a central zone, an intermediate zone and an outer zone. The surface of the intermediate zone was covered by a SiO_2 layer due to the oxidation of Si and SiC. A particle layer, which consisted of SiC particles and graphite particles, was found beneath the SiO_2 layer due to the large inner stress. In the central zone, an extra SiO layer was detected owing to the high temperature and the few oxygen in the particle layer. Due to the good wettabiliry with graphite, the SiO_2 layer exhibited excellent ablation resistance by inhibiting oxygen diffusion and lowering the mechanical erosion of the flame. Besides, the evolution of the gases formed inside the composite helped to improve the ablation resistance.
机译:石墨/ SiC复合材料是通过活性金属渗透(RMI)制备的。研究了氧-火焰火焰下的显微组织和烧蚀机理。消融表面由中心区域,中间区域和外部区域组成。由于Si和SiC的氧化,中间区域的表面被SiO_2层覆盖。由于较大的内应力,在SiO_2层下方发现了由SiC颗粒和石墨颗粒组成的颗粒层。在中心区域,由于高温和颗粒层中的氧气很少,检测到额外的SiO层。由于与石墨的良好润湿性,SiO_2层通过抑制氧的扩散并降低火焰的机械侵蚀而表现出出色的抗烧蚀性。此外,在复合材料内部形成的气体的逸出有助于改善抗烧蚀性。

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