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High‑temperature performance of ambient‑cured alkali‑activated binder concrete

机译:环境固化碱活性粘合剂混凝土的高温性能

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Owing to their lower carbon footprint and efficient performance compared to portland cement (PC), alkali-activated binders (AAB) show promising potential as an alternative to PC. The present paper investigates the high-temperature performance of AAB concrete through compressive and bond strength tests. Four different AAB concrete mixes with varying proportions of fly ash: slag (100:0, 70:30, 60:40, and 50:50) cured under ambient conditions are exposed to elevated temperatures. The mechanical performance of AAB concrete is corroborated with microstructural changes. The results show that AAB concrete with fly ash: slag ratio of 70:30 exhibits the best mechanical performance after exposure to elevated temperatures. This behaviour is attributed to the growth of new crystalline phases of akermanite and gehlenite as observed from the X-ray diffraction patterns. This study shows that there is an optimum proportion of slag content beyond which the mechanical performance of AAB concrete significantly deteriorates when exposed to elevated temperatures. The failure pattern of AAB concrete during the bond strength test varies with the precursor proportion and the exposure condition.
机译:由于其与波特兰水泥(PC)相比的碳足迹和高效性能,碱活化粘合剂(AAB)显示有希望的潜力作为PC的替代品。本文通过压缩和粘合强度试验研究了AAB混凝土的高温性能。四种不同的AAB混凝土混合与粉煤灰不同比例不同:渣(100:0,70:30,60:40和50:50)在环境条件下固化为升高的温度。 AAB混凝土的机械性能具有微观结构变化的证实。结果表明,具有粉煤灰的AAB混凝土:70:30的矿渣比在暴露于高温后显示出最佳的机械性能。这种行为归因于从X射线衍射图案观察到的αkermanite和葛仑酸盐的新结晶阶段的生长。该研究表明,在暴露于升高的温度时,炉渣含量的最佳比例超出了AAB混凝土的机械性能显着恶化。粘结强度试验期间AAB混凝土的故障模式随前体比例和暴露条件而变化。

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