首页> 外文期刊>Journal of Materials Engineering and Performance >SiC Nanoparticles Toughened-SiC/MoSi2-SiC Multilayer Functionally Graded Oxidation Protective Coating for Carbon Materials at High Temperatures
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SiC Nanoparticles Toughened-SiC/MoSi2-SiC Multilayer Functionally Graded Oxidation Protective Coating for Carbon Materials at High Temperatures

机译:SiC纳米颗粒韧性-SiC / MOSI2-SIC多层多层在高温下用碳材料功能升降氧化保护涂层

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摘要

A SiC nanoparticle toughened-SiC/MoSi2-SiC functionally graded oxidation protective coating on graphite was prepared by reactive melt infiltration (RMI) at 1773 and 1873 K under argon atmosphere. The phase composition and anti-oxidation behavior of the coatings were investigated. The results show that the coating was composed of MoSi2, alpha-SiC and beta-SiC. By the variations of Gibbs free energy (calculated by HSC Chemistry 6.0 software), it could be suggested that the SiC coating formed at low temperatures by solution-reprecipitation mechanism and at high temperatures by gas-phase reactions and solution-reprecipitation mechanisms simultaneously. SiC nanoparticles could improve the oxidation resistance of SiC/MoSi2-SiC multiphase coating. Addition of SiC nanoparticles increases toughness of the coating and prevents spreading of the oxygen diffusion channels in the coating during the oxidation test. The mass loss and oxidation rate of the SiC nanoparticle toughened-SiC/MoSi2-SiC-coated sample after 10-h oxidation at 1773 K were only 1.76% and 0.32 x 10(-2) g/cm(3)/h, respectively.
机译:通过在氩气氛下在1773和1873K的反应性熔融浸润(RMI)下,制备石墨上的SiC纳米颗粒增韧-SiC / MOSI2-SiC功能梯度氧化保护涂层。研究了涂层的相组成和抗氧化行为。结果表明,涂​​层由MOSI2,α-SiC和β-SiC组成。通过Gibbs自由能的变化(通过HSC化学6.0软件计算),可以提出通过溶液 - 再沉淀机制和通过气相反应的高温在低温下形成的SiC涂层同时进行溶液再沉淀机制。 SiC纳米颗粒可以改善SiC / MOSI2-SiC多相涂层的抗氧化性。添加SiC纳米颗粒增加涂层的韧性并防止在氧化试验期间涂布氧扩散通道的扩散。 10-H氧化在1773k的10-H氧化后SiC纳米颗粒增韧SiC / MOSI2-SiC涂覆样品的质量损失和氧化速率分别仅为1.76%和0.32×10(-2)g / cm(3)/ h 。

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