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Effect of curing time on microstructure and mechanical strength development of alkali activated binders based on vitreous calcium aluminosilicate (VCAS)

机译:固化时间对基于玻璃铝硅酸钙(VCAS)的碱活化粘合剂的微观结构和机械强度发展的影响

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The aim of this paper is to study the influence of curing time on the microstructure and mechanical strength development of alkali activated binders based on vitreous calcium aluminosilicate (VCAS). Mechanical strength of alkali activated mortars cured at 65 °C was assessed for different curing times (4-168 h) using 10 molal NaOH solution as alkaline activator. Compressive strength values around 77 MPa after three days of curing at 65 °C were obtained. l-68MPa/h compressive strength gain rate was observed in the first 12h, decreasing to 0-95MPa/h for the period of 12-72 h. The progress of geopolymeric reaction was monitored by means of TGA and, electrical conductivity and pH measurements in an aqueous suspension. Significant decrease in pH and electrical conductivity were observed in the 4—72 h period, demonstrating the geopolymerization process. Furthermore, SEM images showed an important amount of (N, C)ASH gel and low porosity of the developed matrix.
机译:本文的目的是研究固化时间对基于玻璃铝硅酸钙(VCAS)的碱活化粘合剂的微观结构和机械强度发展的影响。使用10摩尔的NaOH溶液作为碱性活化剂,评估了在65°C固化的碱活化砂浆的机械强度对于不同的固化时间(4-168小时)。在65°C下固化三天后,获得的抗压强度值约为77 MPa。在最初的12h观察到1-68MPa / h的抗压强度增加率,在12-72h的时间内降低到0-95MPa / h。借助于TGA以及在水悬浮液中的电导率和pH值测量来监测地聚反应的进程。在4-72小时内观察到pH值和电导率显着下降,表明了地聚过程。此外,SEM图像显示出大量的(N,C)ASH凝胶和低孔隙率的显影基质。

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