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Characteristics of ZrC Barrier Coating on SiC-Coated Carbon/Carbon Composite Developed by Thermal Spray Process

机译:热喷涂工艺在SiC包覆的碳/碳复合材料上制备ZrC阻挡层的特性

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摘要

A thick ZrC layer was successfully coated on top of a SiC buffer layer on carbon/carbon (C/C) composites by vacuum plasma spray (VPS) technology to improve the ablation resistance of the C/C composites. An optimal ZrC coating condition was determined by controlling the discharge current. The ZrC layers were more than 70 µm thick and were rapidly coated under all spraying conditions. The ablation resistance and the oxidation resistance of the coated layer were evaluated in supersonic flames at a temperature exceeding 2000 °C. The mass and linear ablation rate of the ZrC-coated C/C composites increased by 2.7% and 0.4%, respectively. During flame exposure, no recession was observed in the C/C composite. It was demonstrated that the ZrC coating layer can fully protect the C/C composites from oxidation and ablation.
机译:通过真空等离子喷涂(VPS)技术成功地在碳/碳(C / C)复合材料上的SiC缓冲层上成功涂覆了一层厚ZrC层,以提高C / C复合材料的抗烧蚀性。通过控制放电电流可以确定最佳的ZrC涂层条件。 ZrC层的厚度超过70 µm,并在所有喷涂条件下均被快速涂覆。在超音速火焰中在超过2000℃的温度下评估涂层的耐烧蚀性和抗氧化性。 ZrC涂层的C / C复合材料的质量和线性烧蚀率分别提高了2.7%和0.4%。在火焰暴露期间,在C / C复合材料中未观察到凹陷。结果表明,ZrC涂层可以充分保护C / C复合材料免受氧化和烧蚀。

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