SiC Nanoparticles Toughened-SiC/MoSi2-SiC Multilayer Functionally Graded Oxidation Protective Coating for Carbon Materials at High Temperatures

被引:0
作者
Alireza Abdollahi
Naser Ehsani
Zia Valefi
Ali Khalifesoltani
机构
[1] Malek Ashtar University of Technology,Faculty of Materials and Manufacturing Processes
来源
Journal of Materials Engineering and Performance | 2017年 / 26卷
关键词
carbon materials; coatings; infiltration; oxidation; silicon carbide;
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中图分类号
学科分类号
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, α-SiC and β-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 × 10−2 g/cm3/h, respectively.
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页码:2878 / 2889
页数:11
相关论文
共 102 条
[1]  
Zhu Q(1999)Oxidation Resistant SiC Coating for Graphite Materials Carbon 37 1475-1484
[2]  
Qiu X(2013)Resistance to Oxidation and Ablation of SiC Coating on Graphite Prepared by Chemical Vapor Reaction Corros. Sci. 75 16-27
[3]  
Ma C(2004)Oxidation Behaviour of C/C-SiC Coated with SiC-B Mater. Sci. Eng. A 386 428-434
[4]  
Yang X(2015)C-SiC-Cordierite Oxidation Protection System Ceram. Int. 41 1695-1700
[5]  
Huang Q(2000)Oxidation Behavior of SiBC Matrix Modified C/SiC Composites with Different PyC Interphase Thicknesses J. of the Am. Ceram. Soc. 83 1351-1355
[6]  
Su Z(2008)Yttrium Silicate Coatings for Oxidation Protection of Carbon–Silicon Carbide Composites J. Am. Ceram. Soc. 91 519-526
[7]  
Chang X(2006)Oxidation Kinetics and Stress Effects for the Oxidation of Continuous Carbon Fibers Within a Microcracked C/SiC Ceramic Matrix Composite Mater. Lett. 60 431-434
[8]  
Chai L(2005)Oxidation Protective Glass Coating for SiC Coated Carbon/Carbon Composites for Application at 1773 K Carbon 43 1749-1757
[9]  
Liu C(2013)Design of a C/SiC Functionally Graded Coating for the Oxidation Protection of C/C Composites Ceram. Int. 39 5477-5483
[10]  
Xue L(2015)HfC-Based Coating Prepared by Reactive Melt Infiltration on C/C Composite Substrate Ceram. Int. 41 797-811