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Effect of temperature on the strength, hydration products and microstructure of shotcrete blended with supplementary cementitious materials

机译:温度对辅助胶粘材料的力量,水化产物和吸附混合微观结构的影响

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The effect of temperature on the strength, hydration products and microstructure of shotcrete blended with or without 15 wt% FA, 8 wt% SF, or 15 wt% GBFS are investigated in the range of 20 to 80 degrees C. The characterization of hydration products, including the type and content of hydration products, C-S-H composition, microstructure and porosity were determined via XRD, Raman spectroscopy, SEM-EDS, and TG. In addition, the hydrate phase assemblages depending on temperature are simulated by thermodynamic modelling (GEMS). The results indicated that the hydration temperature of 40-80 degrees C promotes a fast hydration of shotcrete with or without SCMs within 28 days. After 28 days, the compressive strength of shotcrete decreases significantly when the curing temperature over 40 degrees C, however, the compressive strength of shotcrete blended with SCMs does not decrease. Above 60 degrees C, the porosity of shotcrete with or without SCMs increases after 28 days. At 70 degrees C, due to the accelerator and increased pozzolanic reaction of the SCMs, the composition of C-S-H of shotcrete with SCMs is shifted towards higher S*/Si, Al/Si, and Si/Ca ratio. In addition, the finer needle-like ettringites with the maximum width between similar to 0390 mu m and similar to 0.643 mu m at 60-80 degrees C were observed. The observed variations of the phase with temperature are confirmed by the thermodynamic model. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在20至80℃的范围内研究温度对吸收和15wt%Fa,8wt%SF或15wt%GBF的吸收强度,水合产物和微观结构的影响。水合产物的表征,包括通过XRD,拉曼光谱,SEM-EDS和Tg测定水合产物,CSH组合物,微观结构和孔隙的类型和含量。另外,根据温度的水合物相组装通过热力学建模(Gems)模拟。结果表明,40-80℃的水化温度促进在28天内使用或不含SCM的吸收的快速水合。 28天后,当固化温度超过40摄氏度时,喷射克雷特的抗压强度显着降低,但是与SCM混合的喷射克雷特的压缩强度不会降低。在60℃以上,28天后具有或不具有SCM的吸收孔隙率。在70摄氏度下,由于SCM的促进剂和增加的火泳反应,SCM的C-S-H的组成朝向更高的S * / Si,Al / Si和Si / Ca比移位。另外,观察到具有与0390μm的最大宽度和类似于0.643μm的更精细的针状Ettringites,在60-80℃下相似。通过热力学模型确认具有温度的相位的观察到的变化。 (c)2020 elestvier有限公司保留所有权利。

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