High temperature oxidation and ablation behaviors of HfB2-SiC/SiC coatings for carbon/carbon composites fabricated by dipping-carbonization assisted pack cementation

材料科学 碳化 涂层 胶结(地质) 复合材料 烧蚀 碳纤维 增强碳-碳 陶瓷
作者
Lei Zhou,Jiaping Zhang,Dou Hu,Qiangang Fu,Wenjun Ding,Jiaqi Hou,Bing Liu,Tong Mu
出处
期刊:Journal of Materials Science & Technology [Elsevier BV]
卷期号:111: 88-98 被引量:14
标识
DOI:10.1016/j.jmst.2021.08.092
摘要

To improve the uniformity and the content of HfB2 in HfB2-Si-based ceramic coating and alleviate the damage of substrate, and then enhance the high-temperature (1700 °C) oxidation and cyclic ablation resistances of carbon/carbon composites, a close-knit double layer HfB2-SiC/SiC coatings with a mosaic structure and high content of HfB2 were prepared by a novel dipping-carbonization assisted pack cementation methods (DPCHS/S). In contrast, a HfB2-SiC/SiC coatings were also fabricated by pack cementation (PCHS/S). Results revealed that the oxidation and ablation protective performances of the DPCHS/S coatings were superior to those of PCHS/S coatings. After 30 thermal cycles between 1500 °C and room temperature, the mass gain of the coated sample was 0.78%, and the mass loss was 1.65% after oxidation at 1700 °C for 156 h. Moreover, under an oxyacetylene torch ablation for 180 s (3 cycles), the linear ablation rate of the DPCHS/S coated specimen was 1.62 μm/s, which was much lower than that of PCHS/S coated specimen (3.08 μm/s).
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