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Ablation behavior of three-dimensional braided C/SiC composites by oxyacetylene torch under different environments

机译:乙炔焊炬在不同环境下三维编织C / SiC复合材料的烧蚀行为

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摘要

SiC ceramic matrix composites reinforced by three-dimensional braided carbon fibers were prepared via polycarbosilane infiltration pyrolysis (PIP). The ablation behavior of the composites was characterized by an oxyacetylene torch under different environments. The morphology and microstructure of the as-ablated composites were examined by scanning electron microscopy and the composition of the new phase was confirmed by energy dispersive spectroscopy. Two conditions showed different ablation mechanisms. The erosion mechanism of the high speed oxyacetylene torch was the main ablation behavior under oxygen free environment. Thermo-chemicals ablation was the main ablation behavior under abundant oxygen environment.
机译:通过聚碳硅烷渗透热解法制备了三维编织碳纤维增强的SiC陶瓷基复合材料。复合材料的烧蚀行为由在不同环境下的乙炔焊炬表征。通过扫描电子显微镜检查了烧蚀后的复合材料的形貌和微观结构,并通过能量色散光谱确定了新相的组成。两种情况显示了不同的消融机制。高速氧乙炔焊炬的腐蚀机理是无氧环境下的主要烧蚀行为。在大量氧气环境下,热化学烧蚀是主要的烧蚀行为。

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