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Enhancements in the properties of porous alumina materials by utilizing multi-sol-impregnated walnut shell

机译:增强多孔氧化铝的特性材料利用multi-sol-impregnated胡桃壳

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? 2021, Australian Ceramic Society.To further improve the properties of the porous alumina materials, which were prepared by using walnut shell as pore former with a multi-layer hierarchical structure, the multiple sol (zirconia sol, alumina sol, and silica sol)–impregnated walnut shell powder was utilized. The hygroscopicity and microstructure of walnut shell, and physical performances, thermal conductivity, and microstructure of porous alumina materials were characterized. The residual structure of walnut shells impregnated with multiple sols was left in the pores, which optimized the pore structure of materials. High-performance porous alumina materials were produced by successively impregnating with silica, alumina, and zirconia sols, which possesses low thermal conductivity of 0.166?W/(m·K) at 200?°C and ultra-high compressive strength of 84.4?MPa. The above excellent properties result in a great advantage for the existing materials. In addition, the feasibility of optimizing the structure and properties of the porous alumina materials, by using the residual structure of pore-forming agent, was further verified.
机译:? 提高多孔氧化铝的性质材料,准备用胡桃木用多层壳孔前层次结构,多个溶胶(氧化锆溶胶、氧化铝溶胶和硅索尔)浸渍核桃壳粉利用。核桃壳,物理性能,热导率和显微组织多孔氧化铝材料的特点。剩余的胡桃壳浸渍的结构与多个溶胶的毛孔材料的孔隙结构进行了优化。高性能多孔氧化铝材料先后产生的浸渍二氧化硅,氧化铝,氧化锆溶胶具有导热系数低0.166 W / (m·K) 200 ?抗压强度为84.4 ? MPa。优良性能导致很大的优势现有的材料。的可行性和优化结构性能的多孔氧化铝材料使用剩余的孔状结构剂,进一步验证。

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