Long-term mechanical and shrinkage properties of cementitious grouts for structural repair

Q2 Engineering
Shamsuddoha, G. Hüsken, W. Schmidt, H. Kühne, M. Baessler
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引用次数: 2

Abstract

Grouts have numerous applications in construction industry such as joint sealing, structural repair, and connections in precast elements. They are particularly favoured in rehabilitation of structures due to penetrability and convenience of application. Grouts for repair applications typically require high-performance properties such as rapid strength development and superior shrinkage characteristics. Sometimes industrial by-products referred as supplementary cementitious materials (SCM) are used with neat cement due to their capabilities to provide binding properties at delayed stage. Micro silica, fly ash and metakaolin are such SCMs, those can modify and improve properties of cement products. This study aims at investigating long-term mass loss and linear shrinkage along with long-term compressive and flexural strength for grouts produced from ultrafine cement and SCMs. A series of mixtures were formulated to observe the effect of SCMs on these grout properties. Properties were determined after 365 days of curing at 23oC and 55% relative humidity. The effect of SCMs on the properties are characterised by statistical models. Response surfaces were constructed to quantify these properties in relation to SCMs replacement. The results suggested that shrinkage was reduced by metakaolin, while micro silica and fly ash had positive effects on compressive and flexural strength, respectively.
结构修补用胶凝浆液的长期力学和收缩特性
灌浆在建筑工业中有许多应用,如接缝密封、结构修复和预制构件的连接。由于其渗透性和使用方便,它们在结构修复中特别受欢迎。用于修复应用的灌浆通常需要高性能的性能,如快速强度发展和优越的收缩特性。有时工业副产品称为补充胶凝材料(SCM)与纯水泥一起使用,因为它们具有在延迟阶段提供结合特性的能力。微二氧化硅、粉煤灰和偏高岭土是一类能改性和改善水泥制品性能的改性材料。本研究旨在研究由超细水泥和SCMs制成的浆液的长期质量损失和线性收缩以及长期抗压和抗弯强度。配制了一系列的混合料来观察SCMs对这些浆液特性的影响。在23℃和55%相对湿度下养护365天后测定其性能。用统计模型描述了SCMs对性能的影响。构建响应面来量化与scm替换相关的这些特性。结果表明,偏高岭土对混凝土的收缩率有一定的降低作用,而微二氧化硅和粉煤灰对混凝土的抗压强度和抗弯强度均有积极的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
RILEM Technical Letters
RILEM Technical Letters Materials Science-Materials Science (all)
CiteScore
5.00
自引率
0.00%
发文量
13
审稿时长
10 weeks
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