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首页> 外文期刊>Cement & concrete composites >Effect of mix design inputs, curing and compressive strength on the durability of Na2SO4-activated high volume fly ash concretes
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Effect of mix design inputs, curing and compressive strength on the durability of Na2SO4-activated high volume fly ash concretes

机译:混合设计输入,固化和抗压强度对Na2SO4激活大容量粉煤灰混凝土耐久性的影响

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摘要

This paper aims to advance research on the use in concrete of a high volume of fly ash, with a high loss on ignition value, aiding in sustainable low carbon footprint construction. To this end, the work explores the benefits that may be achieved in terms of long-term concrete performance from the incorporation of fly ash along with a chemical activator. Durability tests are performed on concrete with an activated hybrid cementitious system: Portland cement (PC) and high volume fly ash with sodium sulfate. The chloride diffusion coefficient significantly decreased over time for the activated system (50% PC - 50% fly ash with added sodium sulfate) compared to the control samples (100% PC and 80% PC - 20% fly ash) at the same water to cementitious material ratio. This behavior is particularly evident in samples cured under controlled laboratory conditions (100% RH and 23 degrees C). However, outdoor curing increases the permeability for all concretes. Long term carbonation is also investigated under natural exposure conditions, and samples that are cured outdoors exhibit a significant carbonation depth. The compressive strength is correlated with the durability parameters: the durability performance improves as the compressive strength increases, indicating that as is the case for Portland cement (but not always for alkali-activated binders), the microstructural factors which yield high strength are also contributing to durability properties.
机译:本文旨在提前研究大量粉煤灰混凝土的研究,具有高损失的点火价值,防止可持续的低碳足迹结构。为此,该工作探讨了从粉煤灰和化学活化剂掺入的长期混凝土性能方面可以实现的益处。耐久性测试是用活化的混合水泥系统的混凝土进行:波特兰水泥(PC)和高量粉煤灰,硫酸钠。与对照样品(100%PC和80%PC - 20%粉煤灰)相比,氯化物扩散系数随着时间的推移而随着时间的推移而显着降低,随着对照样品(100%PC和80%PC - 20%飞灰)与相同的水相比水泥材料比。在受控实验室条件下固化的样品(100%RH和23摄氏度),这种行为特别明显。然而,室外固化会增加所有混凝土的渗透性。在天然暴露条件下还研究了长期碳酸化,户外治愈的样品表现出显着的碳酸化深度。抗压强度与耐久性参数相关联:随着抗压强度的增加,耐久性性能提高,表明与波特兰水泥的情况(但并不总是碱性激活粘合剂),产生高强度的微观结构因素也是有贡献耐久性属性。

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