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首页> 外文期刊>Journal of the Ceramic Society of Japan >Fabrication and characterization of hierarchical porous SiC ceramics via gelcasting and carbothermal reduction between carbon and SiO
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Fabrication and characterization of hierarchical porous SiC ceramics via gelcasting and carbothermal reduction between carbon and SiO

机译:通过凝固和碳和SiO的凝固和碳热还原制备和表征分层多孔SiC陶瓷

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摘要

With phenolic resin as carbon source, ethylene glycol as solvent and pore-forming agent, and silicon monoxide as pore-forming agent and silicon source, a kind of light hierarchical porous silicon carbide (SiC) ceramics with adjustable pores was prepared by gelcasting, carbonization and carbothermal reduction. With the addition of silicon monoxide in the green body from 13 to 49%, the porosities increased from 66 to 89%, the densities and thermal conductivity are as low as 0.36 g·cmsup?3/sup and 0.29 W·msup?1/sup·Ksup?1/sup. The macropores are mainly determined by the addition of silica particle size, which increases from 9.2 to 39.5%, while the micropores and mesopores, ranging from 56.8 to 49.5%, are mainly determined by the pyrolysis of resin carbon source. When the porosity of porous SiC is 75%, the compressive strength of 7.83 MPa can be reached. The prepared porous SiC ceramics possessed light, good thermal insulation and other properties, which can be further improved by changing the shape and size of the added SiO particles. In addition, different from using polycarbosilane as preceramic polymer, the porous SiC ceramics with complex shape and uniform microstructure can be prepared via gelcasting, which will reduce the production costs and broaden its application.
机译:用酚醛树脂作为碳源,乙二醇作为溶剂和孔隙成形剂,以及硅一氧化硅作为孔隙成型剂和硅源,通过凝胶化,碳化制备一种具有可调节孔的轻层状多孔碳化硅(SiC)陶瓷。和Carbothotmal减少。随着绿色体中的硅一氧化物从13〜49%加入,孔隙率从66增加到89%,密度和导热率低至0.36g·cm 3 和0.29 w ·m ?1 ·k ?1 。大孔主要通过加入二氧化硅粒度决定,其从9.2-39.5%增加,而微孔和中孔的范围为56.8至49.5%,主要由树脂碳源的热解。当多孔SiC的孔隙率为75%时,可以达到7.83MPa的抗压强度。制备的多孔SiC陶瓷具有光,良好的隔热和其他性能,可以通过改变添加的SiO颗粒的形状和尺寸来进一步提高。另外,与使用聚碳硅烷作为培养聚合物不同,通过凝胶化可以制备具有复杂形状和均匀微观结构的多孔SiC陶瓷,这将降低生产成本并扩大其应用。

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