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首页> 外文期刊>CERAMICS INTERNATIONAL >Supersonic flame ablation resistance of W/ZrC coating deposited on C/SiC composites by atmosphere plasma spraying
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Supersonic flame ablation resistance of W/ZrC coating deposited on C/SiC composites by atmosphere plasma spraying

机译:大气等离子体喷涂沉积在C / SiC复合材料上的W / ZrC涂层的超音速火焰烧蚀性能

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摘要

To improve the ablation resistance of C/SiC composites, in this study, double-layer coatings, with W as inner layer and ZrC as outer layer, were prepared by atmosphere plasma spraying. The coatings exhibited a dense structure, a good bonding with substrate and outstanding anti-ablation ability. After the coated composites were ablated at the distance of 100 mm for 60 s, the mass and linear ablation rates were 29.5 x 10~(-2) g s~(-1) and 5.33 x 10~(-3) mm s~(-1), decreasing by 38.2% and 56.7% respectively, compared with those of uncoated composites. The mechanical denudation played a principal role in the ablation of the ZrC outer layer. The gas release during ablation could take away a lot of heat. The melting of WO_3 could also consume lots of heat, and form a dense surface which was helpful to protect the composites. During the 200 mm ablation, WO_3 needle-like crystals were formed.
机译:为了提高C / SiC复合材料的抗烧蚀性能,本研究通过大气等离子喷涂制备了以W为内层,ZrC为外层的双层涂层。涂层表现出致密的结构,与基材的良好粘合性以及出色的抗烧蚀能力。涂覆的复合材料在100 mm的距离上烧蚀60 s后,质量和线性烧蚀速率分别为29.5 x 10〜(-2)gs〜(-1)和5.33 x 10〜(-3)mm s〜( -1),与未涂覆的复合材料相比分别降低了38.2%和56.7%。机械剥蚀在ZrC外层的烧蚀中起主要作用。消融期间释放的气体会带走大量热量。 WO_3的熔化也会消耗大量热量,并形成致密的表面,这有助于保护复合材料。在200毫米的消融过程中,形成了WO_3针状晶体。

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