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Ablation Properties Of Carbon/carbon Composites With Tungsten Carbide

机译:碳化钨碳/碳复合材料的烧蚀性能

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The ablation properties and morphologies of carbon/carbon (C/C) composites with tungsten carbide (WC) filaments were investigated by ablation test on an arc heater and scanning electron microscopy. And the results were compared with those without tungsten carbide (WC) filaments tested under the same conditions. It shows that there is a big difference between C/C composites with and without WC filaments on both macroscopic and microscopic ablation morphologies and the ablation rates of the former are higher than the latter. It is found that the ablation process of C/C composites with WC filaments includes oxidation of carbon fibers, carbon matrices and WC, melting of WC and WO_3, and denudation of WC, WO_3 and C/C composites. Oxidation and melting of WC leads to the formation of holes in z directional carbon fiber bundles, which increases the coarseness of the ablation surfaces of the composites, speeds up ablation and leads to the higher ablation rate. Moreover, it is further found that the molten WC and WO_3 cannot form a continuous film on the ablation surface to prevent further ablation of C/C composites.
机译:通过在电弧加热器上的烧蚀试验和扫描电子显微镜研究了具有碳化钨(WC)细丝的碳/碳(C / C)复合材料的烧蚀性能和形貌。并将结果与​​没有在相同条件下测试的碳化钨(WC)灯丝的结果进行比较。结果表明,无论是宏观还是微观的烧蚀形态,含和不含WC丝的C / C复合材料的宏观烧蚀形态和微观烧蚀率都有较大差异。发现使用WC细丝的C / C复合材料的烧蚀过程包括碳纤维,碳基体和WC的氧化,WC和WO_3的熔融以及WC,WO_3和C / C复合材料的剥蚀。 WC的氧化和熔化导致在z向碳纤维束中形成孔,这增加了复合材料的烧蚀表面的粗糙度,加速了烧蚀并导致了较高的烧蚀率。此外,进一步发现,熔融的WC和WO_3不能在烧蚀表面上形成连续的膜,以防止C / C复合材料的进一步烧蚀。

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