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Effects of lactic and citric acid on early-age engineering properties of Portland/calcium aluminate blended cements

机译:乳酸和柠檬酸对波特兰/铝酸钙混合水泥早期工程性能的影响

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摘要

In this study, Portland/calcium aluminate blended cement (PC/CAC) was combined with citric acid or lactic acid as additives to investigate the effects of the aforementioned carboxylic acids on the hydration reactions of PC/CAC as a potential fast hardening and low cost repair material for concrete. Mortar specimens with the carboxylic acid additives of either 0.5%, 1% or 3% by weight, prepared with a binder:sand:water ratio (by weight) of 1:3:0.5, were subjected to flexural and compressive strength tests at early ages up to 28 days. In order to understand the phase composition of the hydrates in the PC/CAC systems, XRD analyses were conducted on ground PC/CAC mortars with and without carboxylic acid at 7, 14 and 28 days. In combination with this, SEM images of selected mortar specimens were also taken at the same times for visual analyses of hydrates. Citric acid did not have any beneficial effect on enhancing the calcium silicate phase as initially assumed and instead reduced the strength of PC/CAC cement at all levels of concentration. The experiment analyses revealed that Portlandite crystals were the major hydrate phase in PC/CAC with lactic and citric acids. Lactic acid below 2% wt. improved both compressive and flexural strength gained at early ages due to improved crystallinity of the calcium hydroxide crystals. Combined with its inherent rapid setting time, PC/CAC blended cements have a potential to be developed into a suitable repair material for concrete. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在这项研究中,将波特兰/铝酸钙混合水泥(PC / CAC)与柠檬酸或乳酸混合作为添加剂,以研究上述羧酸对PC / CAC的水合反应的影响,因为它可能具有快速硬化和低成本的潜力。混凝土修补材料。用1:3:0.5的粘合剂:砂:水的重量比(重量比)制备的具有0.5%,1%或3%重量比的羧酸添加剂的砂浆样品在早期进行抗弯和抗压强度测试长达28天。为了了解PC / CAC系统中水合物的相组成,在7天,14天和28天对有或没有羧酸的PC / CAC研钵进行XRD分析。与此相结合,还同时采集了所选砂浆样品的SEM图像,以进行水合物的可视化分析。柠檬酸对最初假设的增强硅酸钙相没有任何有益作用,而是在所有浓度水平下都降低了PC / CAC水泥的强度。实验分析表明,硅酸盐晶体是PC / CAC中乳酸和柠檬酸的主要水合物相。乳酸低于2重量%。由于氢氧化钙晶体的结晶度提高,因此提高了早期获得的抗压强度和抗弯强度。结合其固有的快速凝固时间,PC / CAC混合水泥有潜力被开发成适用于混凝土的修补材料。 (C)2015 Elsevier Ltd.保留所有权利。

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