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首页> 外文期刊>Journal of Materials Science >Relationships between composition, structure and strength of inorganic polymers - Part 2 - Flyash-derived inorganic polymers
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Relationships between composition, structure and strength of inorganic polymers - Part 2 - Flyash-derived inorganic polymers

机译:无机聚合物的组成,结构与强度之间的关系第2部分-粉煤灰衍生的无机聚合物

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This article is the second in a two-part series and discusses inorganic polymers derived from fly ash. Part 1 [1] concerns inorganic polymers derived from a metakaolin precursor. For this study, 15 fly ash-derived inorganic polymers were produced with various compositions. The effect of the concentration of each of the four component oxides (Na2O, SiO2, Al2O3 and H2O) and two alkali cations (Na and K) on the microstructure and compressive strengths were assessed. Similar to metakaolin-derived inorganic polymers, it was observed that high-strength fly ash inorganic polymers were related to low porosity and a dense, fine-grained microstructure. Such structures were characteristic of formulations with high silica mole fractions (SiO2/Al2O3 similar to 3.9) and low water contents, as well as those with high alkali and low alumina contents. For the latter, not only-was a characteristic slower strength development with increasing alkali content observed, but there was also a limit of alkali concentration (Na2O/Al2O3 similar to 1) beyond which the strength deteriorated. Furthermore, SEM micrographs disclose that the fly ash precursor dissolves more readily in the sodium-based system compared to the potassium equivalent. The interrelation between microstructures of the respective formulations and their strength development are discussed. It is observed that the charge-balancing role of the alkali cations in the fly ash formulations may be dominant compared to initial alkali dissolution reaction of the aluminosilicate fly ash particles, which is partly responsible for initial strength development. (c) 2005 Springer Science + Business Media, Inc.
机译:本文是由两部分组成的系列文章中的第二篇,讨论了粉煤灰衍生的无机聚合物。第1 [1]部分涉及衍生自偏高岭土前体的无机聚合物。对于本研究,生产了15种粉煤灰衍生的无机聚合物,具有各种组成。评估了四种成分氧化物(Na2O,SiO2,Al2O3和H2O)和两种碱金属阳离子(Na和K)的浓度对显微组织和抗压强度的影响。与偏高岭土衍生的无机聚合物相似,已观察到高强度粉煤灰无机聚合物与低孔隙率和致密,细粒度的微观结构有关。这种结构是具有高二氧化硅摩尔分数(SiO2 / Al2O3类似于3.9)和低水含量的配方,以及具有高碱和低氧化铝含量的配方的特征。对于后者,不仅观察到随着碱含量的增加而强度发展缓慢的特征,而且还存在碱浓度的极限(Na 2 O / Al 2 O 3类似于1),超过该极限强度降低。此外,SEM显微照片公开了与钾当量相比,粉煤灰前体在钠基体系中更容易溶解。讨论了各个配方的微观结构与其强度发展之间的相互关系。观察到,与铝硅酸盐粉煤灰颗粒的初始碱溶解反应相比,粉煤灰配方中碱金属阳离子的电荷平衡作用可能占主导地位,这部分地负责了初始强度的发展。 (c)2005年Springer Science + Business Media,Inc.

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