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利用粉煤灰制备多孔莫来石/氧化铝复合材料的研究

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

作者信息

Kim Kyu H, Yoon Seog Y, Park Hong C

机构信息

School of Materials Science and Engineering, Pusan National University, Pusan 609-735, Korea.

出版信息

Materials (Basel). 2014 Aug 19;7(8):5982-5991. doi: 10.3390/ma7085982.

Abstract

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.

摘要

添加Al₂O₃的粉煤灰被回收利用以生产莫来石/氧化铝复合材料,并采用基于莰烯的冷冻铸造技术来开发具有改善机械强度的可控多孔结构。在足够的硅酸盐熔体存在下,粉煤灰通过莫来石化形成许多棒状莫来石晶体。在初始固体负载量为30-50 wt.%的情况下于1300-1500 °C烧结后,沿冷冻铸造中使用的莰烯溶剂的宏观凝固方向形成了具有近似圆形横截面的相互连通的宏观尺寸孔道,并且在孔道壁中形成了一些微米尺寸的孔隙。莫来石/氧化铝复合材料的大孔尺寸分别在20-25μm、18-20μm和15-17μm范围内,与30 wt.%、40 wt.%和50 wt.%固体负载量下的烧结温度呈反比关系。通过增加初始固体负载量和烧结温度,烧结孔隙率从79.8%降低至31.2%,抗压强度从8.2 MPa增加至80.4 MPa。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a634/5456166/2c7081a132da/materials-07-05982-g001.jpg

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