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Ternary binder made of CFBC fly ash, conventional fly ash, and calcium hydroxide: Phase and strength evolution

机译:由CFBC粉煤灰,常规粉煤灰和氢氧化钙制成的三元粘合剂:相位和强度的进化

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Coal combustion products present a source of aluminosilicate materials for further utilization. The ternary binder studied here is such an example, consisting of circulating fluidized bed combustion (CFBC) fly ash, conventional fly ash and Ca(OH)(2) activator. The paste yields a compressive strength of 32 MPa after 28 days of standard sealed curing. Volumetric evolution of crystalline and amorphous phases during hydration is quantified using XRD analysis, differential thermal gravimetry, porosimetry and electron microscopy. A micromechanical model is applied to interpret the evolution of compressive strength due to the growing proportions of C-S-H and ettringite in the system. This opens the way for further optimization and utilization of this ternary binder. (C) 2018 Elsevier Ltd. All rights reserved.
机译:煤燃烧产物呈现硅铝酸盐材料来源以进一步利用。 研究的三元粘合剂是这样的示例,包括循环流化床燃烧(CFBC)飞灰,常规飞灰和Ca(OH)(2)活化剂。 在标准密封固化的28天后,糊剂在28天后产生32MPa的抗压强度。 使用XRD分析,差分热重量,孔隙率和电子显微镜量量化水合过程中结晶和无定形相的体积演变。 应用微机械模型以解释由于系统中的C-S-H和Ettringite的增长而导致的抗压强度的演变。 这为此开辟了这种三元粘合剂的进一步优化和利用方式。 (c)2018年elestvier有限公司保留所有权利。

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