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Ablation properties of HfB2 coatings prepared by supersonic atmospheric plasma spraying for SiC-coated carbon/carbon composites

机译:SiC涂层碳/碳复合材料的超声常压等离子体喷涂制备HFB2涂层的消融性质

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摘要

In order to improve the ablation resistance of carbon/carbon (C/C) composites, hafnium boride (HfB2) coatings were prepared on the surface of SiC-coated C/C composites by supersonic atmospheric plasma spraying (SAPS). The anti-ablation property was investigated in an oxyacetylene torch environment under different heat flux. The phase composition, surface and cross-section microstructure and ablation behavior of the prepared coated C/C composites were characterized by using X-ray diffraction and scanning electron microscopy equipped with energy dispersion spectroscopy. The HfB2 coating exhibited excellent ablation resistance under 2400 kW/m(2) after ablation for 30 s and no obvious penetrated crack and critical defect could be observed in the coating. The increase of ablation rates with the formation of rugged surface structure and pores indicated that HfB2 coating suffered more serious mechanical denudation and thermochemical erosion. The formation of protective glassy Hf-O layer with low oxygen permeability, generated due to the oxidation of HfB2 phase, inhibited the inward diffusion of oxygen and improved remarkably the ablation resistance of C/C composites.
机译:为了改善碳/碳(C / C)复合材料的消融抗性,通过超声常压等离子体喷涂(SAP)在SiC涂覆的C / C复合材料表面上制备铪硼化铪(HFB2)涂层。在不同的热通量下在氧乙炔炬环境中研究了抗消融性质。通过使用配备有能量分散光谱的X射线衍射和扫描电子显微镜,表征制备的涂覆的C / C复合材料的相组合物,表面和横截面微观结构和消融行为。在烧蚀30秒后,HFB2涂层在2400kw / m(2)下表现出优异的消融电阻,并且在涂层中没有观察到明显的渗透裂缝和临界缺陷。通过形成粗糙的表面结构和孔的烧蚀率的增加表明HFB2涂层遭受更严重的机械剥落和热化学侵蚀。由于HFB2相的氧化而产生的具有低氧气渗透性的保护性玻璃状HF-O层,抑制了氧气的向内扩散,并显着地改善了C / C复合材料的消融电阻。

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