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Effect of alumina source on the densification, phase evolution, and strengthening of sintered mullite-based ceramics from milled coal fly ash

机译:氧化铝源对粉煤灰粉烧结莫来石基陶瓷致密化,相变和强化的影响

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Different alumina sources (Al(OH)(3), Al2O3, and boehmite) were used to prepare mullite-based ceramics from milled coal fly ash. The effect of alumina source and sintering temperature on the densification and phase evolution of these ceramics was investigated. Among the three alumina sources, boehmite yielded the greatest densification and crystallization of the ceramics, and an optimal sintering temperature of 1100 degrees C was identified. The crystallinity and mullite phase increased with increasing boehmite addition, whereas the cristobalite phase decreased. Bulk density and flexural strength values of 2.72 g/cm(3) and 155 MPa, respectively, were realized at a boehmite content of 11.8%. The sintered ceramic consisted of mullite and anorthite phases, and was characterized by a crystallinity of 82.8%. Furthermore, particle refinement of raw materials subjected to prolonged ball milling promoted densification and mullitization at relatively low temperatures. The strengthening of the sintered ceramics was attributed to the improved densification, enhanced crystallization, and increased mullite phase. These results will enable the successful reutilization of coal fly ash in the high-strength ceramic tiles. (C) 2019 Elsevier Ltd. All rights reserved.
机译:使用不同的氧化铝源(Al(OH)(3),Al2O3和勃姆石)从磨成的粉煤灰制备莫来石基陶瓷。研究了氧化铝源和烧结温度对这些陶瓷致密化和相变的影响。在这三种氧化铝源中,勃姆石产生的陶瓷致密化和结晶度最高,并且确定了1100℃的最佳烧结温度。结晶度和莫来石相随着勃姆石添加量的增加而增加,而方石英相的减少。勃姆石含量为11.8%时,堆积密度和弯曲强度分别为2.72 g / cm(3)和155 MPa。烧结陶瓷由莫来石相和钙长石相组成,结晶度为82.8%。此外,经过长时间球磨的原料颗粒细化促进了在较低温度下的致密化和乳化作用。烧结陶瓷的增强归因于改善的致密化,增强的结晶和增加的莫来石相。这些结果将使高强度瓷砖中粉煤灰的成功利用成为可能。 (C)2019 Elsevier Ltd.保留所有权利。

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