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Recycling of Coal Fly Ash for the Fabrication of Porous Mullite/Alumina Composites

机译:粉煤灰的回收用于多孔莫来石/氧化铝复合材料的制造

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摘要

Coal fly ash with the addition of Al2O3 was recycled to produce mullite/alumina composites and the camphene-based freeze casting technique was processed to develop a controlled porous structure with improved mechanical strength. Many rod-shaped mullite crystals, formed by the mullitization of coal fly ash in the presence of enough silicate, melt. After sintering at 1300–1500 °C with the initial solid loadings of 30–50 wt.%, interconnected macro-sized pore channels with nearly circular-shaped cross-sections developed along the macroscopic solidification direction of camphene solvent used in freeze casting and a few micron-sized pores formed in the walls of the pore channels. The macro-pore size of the mullite/alumina composites was in the range 20–25 μm, 18–20 μm and 15–17 μm with reverse dependence on the sintering temperature at 30, 40 and 50 wt.% solid loading, respectively. By increasing initial solid loading and the sintering temperature, the sintered porosity was reduced from 79.8% to 31.2%, resulting in an increase in the compressive strength from 8.2 to 80.4 MPa.
机译:将添加有Al2O3的粉煤灰进行再循环,以生产莫来石/氧化铝复合材料,并对基于the烯的冷冻浇铸技术进行处理,以开发出具有改善的机械强度的可控多孔结构。在足够的硅酸盐存在下,由粉煤灰的乳化作用形成的许多棒状莫来石晶体会熔化。在1300–1500°C烧结后,初始固含量为30–50 wt。%,沿着用于冷冻浇铸的樟脑溶剂的宏观凝固方向,形成了相互连接的,具有近似圆形横截面的宏观孔道。在孔道壁上形成的微米级孔很少。莫来石/氧化铝复合材料的大孔尺寸范围为20–25μm,18–20μm和15–17μm,分别与固含量为30、40和50 wt。%时的烧结温度成反比。通过增加初始固含量和烧结温度,烧结孔隙率从79.8%降低到31.2%,导致抗压强度从8.2MPa增加到80.4MPa。

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