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Porous silica ceramics with relatively high strength and novel bi-modal pore structure prepared by a TBA-based gel-casting method

机译:通过基于TBA的凝胶浇铸法制备的具有较高强度和新颖的双峰孔结构的多孔二氧化硅陶瓷

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摘要

Porous silica ceramics with relatively high strength and novel bi-modal pore structure can be successfully fabricated via a facile tert-butyl alcohol-based gel-casting process by use of silica extracted from coal fly ash. Based on the evaporating of tert-butyl alcohol (TBA) during the drying process, the microstructure with bi-modal pores was obtained. By setting the solid loading (15 wt.%) and changing the sintering temperature from 1050 to 1150 °C, the porosity of the porous silica ceramics varied within the range of 70.1% and 72.4%, as the bulk density varied from 0.59 to 0.67 g/cm~3 and small pore sizes from 3.31 to 2.89 nm. The compressive strength of sintered silica ceramics increased from 4.38 MPa to 5.82 MPa, which was attributed to the 3D-framework structure and the connection of silica particles.
机译:可以使用从粉煤灰中提取的二氧化硅,通过一种简便的基于叔丁醇的凝胶浇铸工艺成功地制造出具有较高强度和新颖的双峰孔结构的多孔二氧化硅陶瓷。基于干燥过程中叔丁醇(TBA)的蒸发,获得了具有双峰孔的微结构。通过设定固含量(15 wt。%)并将烧结温度从1050更改为1150°C,随着堆积密度从0.59变为0.67,多孔二氧化硅陶瓷的孔隙率在70.1%和72.4%的范围内变化g / cm〜3,孔径从3.31到2.89 nm。烧结二氧化硅陶瓷的抗压强度从4.38 MPa增加到5.82 MPa,这归因于3D框架结构和二氧化硅颗粒的连接。

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