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Concrete repair with geopolymeric mortars : influence of mortars composition on their workability and mechanical strength

机译:用地聚合物砂浆修补混凝土:砂浆成分对其可加工性和机械强度的影响

摘要

Since geopolymeric binders generates 70-80% less carbon dioxide than Portland cement these materials have been receiving increased attention, due to the need of reducing green house gas emissions generated by Portland cement and also to the need of new binders with enhanceddurability performance. Several authors have report placement difficulties related to the low workability of geopolymeric mortars. Therefore, the purpose of this paper is to understand how their composition influences its workability and its mechanical strength. This study has investigated the joint effect of several factors on the workability and mechanicalstrength of geopolymeric metakaolin based mortars. The factors analyzed through a laboratory experiment of 432 specimens, and of 48 different mortar mixes were, sodium hydroxide concentration (10M, 12M, 14M, 16M), the superplasticizer content (1%, 2%, 3%) and the percentage substitution of metakaolin by calcium hydroxide in the mixture (5%, 10%). The results show that the workability decreases with the concentration of sodium hydroxide and increases with the amount of calcium hydroxide and superplasticizer. The results also show that the use of 3% ofsuperplasticizer, combined with a calcium hydroxide content of 10%, allows improving the mortar flow from less than 50% to over 90%, while maintaining a high compressive and flexural strength.
机译:由于地聚合物粘合剂产生的二氧化碳比波特兰水泥少70-80%,因此,由于需要减少波特兰水泥产生的温室气体排放,以及需要具有增强的耐久性能的新型粘合剂,这些材料受到了越来越多的关注。几位作者报告了与地质聚合物砂浆的低可加工性相关的放置困难。因此,本文的目的是了解其组成如何影响其可加工性和机械强度。这项研究研究了几种因素对地聚合物偏高岭土基砂浆的可加工性和机械强度的共同影响。通过432个样品和48种不同砂浆混合物的实验室实验分析的因素包括氢氧化钠浓度(10M,12M,14M,16M),高效减水剂含量(1%,2%,3%)和取代百分数偏高岭土由氢氧化钙混合而成(5%,10%)。结果表明,可加工性随氢氧化钠浓度的增加而降低,随氢氧化钙和高效减水剂的添加而增加。结果还表明,结合使用3%的高效减水剂和10%的氢氧化钙,可以将砂浆流量从小于50%提高到90%以上,同时保持较高的抗压和抗弯强度。

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