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High temperature resistance of self compacting alkali activated slag/portland cement composite using lightweight aggregate

机译:使用轻质聚集体自压制碱活性炉渣/门泥晶体复合材料的高耐温性

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摘要

The aim of this study was to fabricate self compacting alkali activated slag/Portland cement composite design by using of lightweight aggregate for high temperatures. Locally available pumice was used as lightweight aggregate. The four parameters considered in this study were: slag to cement ratio (GBFS: PC), water content, lightweight aggregate to normal aggregate ratio and alkali activator to binder ratio. After the tests carried out dependent on four parameters, six composite mixtures were determined for the high temperature experiment. For this purpose, the composite samples were exposed to temperatures of 200, 400, 600, 800 and 1000 degrees C and changes in compressive strength and ultrasonic pulse velocity were measured. The microstructural changes caused by the high temperatures were investigated by means of SEM and FTIR spectroscopy. Following the high temperature tests, compressive strength began to decrease with the temperature increasing. The minimum compressive strengths were observed at the temperature of 800 degrees C. At 1000 degrees C no further deterioration was observed in the compressive strength of the both PC-free and PC substituted composite mixtures. The temperatures at which the microcracks became more evident were 600 degrees C and 800 degrees C for the mixtures with 100% and 85% GBFS, respectively.(c) 2021 Elsevier Ltd. All rights reserved.
机译:本研究的目的是通过使用轻质聚集体进行高温的轻质聚集体来制造自压制碱活性炉渣/门泥晶体复合材料。本地可用的浮石用作轻质聚集体。本研究考虑的四个参数是:渣渣(GBF:PC),水含量,轻质聚集成正常骨料比和碱活化剂与粘合剂的比例。在取决于四个参数的测试之后,测定高温实验的六种复合混合物。为此目的,将复合样品暴露于200,400,600,800和1000摄氏度的温度,并测量压缩强度和超声波脉冲速度的变化。通过SEM和FTIR光谱研究由高温引起的微观结构变化。在高温测试之后,抗压强度开始随温度升高而降低。在800℃的温度下观察到最小抗压强度,在1000℃下,在无双PC和PC取代的复合混合物的抗压强度下观察到进一步劣化。微裂纹变得更加明显的温度分别为600℃和800℃,分别为100%和85%GBFS的混合物。(c)2021 Elsevier Ltd.保留所有权利。

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