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Phase evolution and sintering characteristics of mullite-based ceramics prepared from coal fly ash, calcined bauxite and ball clay

机译:粉煤灰,煅烧铝土矿和球粘土制备的莫来石基陶瓷的相变和烧结特性

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The study provides a novel way for the utilization of coal fly ash, and enriches the sintering mechanism in preparation of low-cost, high performance mullite based ceramic. The phase evolution, microstructure, densification behavior and flexural strength as a function of the sintering temperatures, were investigated by XRD, SEM and evaluated by density, open porosity and shrinkage and three point bending method, respectively. Secondary mullite nucleates from the dissolution of alumina in transient liquid phase at 1300℃. Above 1400℃, mullite content increases and the densification is promoted with increasing temperature. Fast densification takes place and high flexural strength of 149MPa is achieved at 1600℃.
机译:该研究为粉煤灰的利用提供了一条新途径,丰富了烧结机理,从而制备了低成本,高性能莫来石基陶瓷。用XRD,SEM研究了相变,微观结构,致密化行为和弯曲强度与烧结温度的关系,并分别用密度,开孔率和收缩率以及三点弯曲法进行了评估。氧化铝在1300℃下在液相中的溶解使次级莫来石形核。 1400℃以上,随着温度的升高,莫来石含量增加,致密化程度提高。快速致密化,在1600℃达到149MPa的高抗弯强度。

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