材料科学
化学气相渗透
多孔性
热冲击
陶瓷
复合材料
微尺度化学
涂层
热扩散率
碳化硅
渗透(HVAC)
化学气相沉积
微观结构
纳米技术
数学教育
数学
物理
量子力学
作者
Alice Baux,A. Goillot,Sylvain Jacques,Cyprien Heisel,Denis Rochais,Ludovic Charpentier,P. David,T. Piquero,Thierry Chartier,G. Chollon
标识
DOI:10.1016/j.jeurceramsoc.2020.03.001
摘要
Open porosity cellular SiC-based ceramics have a great potential for energy conversion, e.g. as solar receivers. In spite of their tolerance to damage, structural applications at high temperature remain limited due to high production costs or inappropriate properties. The objective of this work was to investigate an original route for the manufacturing of porous SiC ceramics based on 3D printing and chemical vapor infiltration/deposition (CVI/CVD). After binder jetting 3D-printing, the green α-SiC porous structures were reinforced by CVI/CVD of SiC using CH3SiCl3/H2. The multiscale structure of the SiC porous specimens was carefully examined as well as the elemental and phase content at the microscale. The oxidation and thermal shock resistance of the porous SiC structures and model specimens were also studied, as well as the thermal and mechanical properties. The pure and dense CVI/CVD-SiC coating considerably improves the mechanical strength, oxidation resistance and thermal diffusivity of the material.
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