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Synthesis and Sintering of High-temperature Composites Based on Mechanically Activated Fly Ash

机译:基于机械活化粉煤灰的高温复合材料的合成与烧结

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Amount of fly ash which is and yet to be generated in the coming years highlights the necessity of developing new methods of the recycling where this waste can be reused in significant quantity. A new possibility for fly ash utilization is in high-temperature application (thermal insulators or/and refractory material products). As such, fly ash has to adequately answer the mechanical and thermal stability criteria. One of the ways of achieving it is by applying mechanical activation procedure on fly ash. In present study, fly ashes from two different power plants were mechanically activated in a planetary ball mill. Mechanically treated fly ashes were cemented with two different binders: standard Portland cement and high-aluminates cement. Physico-chemical analysis and investigation of mineralogical components of composites, are emphasized, due to the changes occurred in fly ash during mechanical activation and sintering of composites. Macro-performance of the composites was correlated to the microstructure of fly ash studied by means of XRD and SEM analysis. Thermal stability of crystalline phases was investigated with DTA. Highlight was placed on determination of relationship between mechanically activated fly ash and obtained composites microstructure on one side and behavior of sintered composites on the other side.
机译:未来几年仍将产生大量的粉煤灰,这凸显了开发新的回收利用方法的必要性,在这种方法中,这种废物可以大量重复利用。利用粉煤灰的新可能性是在高温应用中(隔热材料或/和耐火材料产品)。因此,粉煤灰必须充分满足机械和热稳定性标准。实现这一目标的方法之一是对粉煤灰应用机械活化程序。在本研究中,来自两个不同电厂的粉煤灰在行星式球磨机中被机械活化。机械处理过的粉煤灰用两种不同的粘合剂粘合:标准波特兰水泥和高铝酸盐水泥。由于复合材料的机械活化和烧结过程中粉煤灰发生了变化,因此着重对复合材料的矿物成分进行了理化分析和研究。复合材料的宏观性能与通过XRD和SEM分析研究的粉煤灰的微观结构相关。用DTA研究了结晶相的热稳定性。重点放在确定机械活化的粉煤灰和一侧获得的复合材料微观结构与另一侧烧结的复合材料的行为之间的关系上。

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