Shrinkage performance and modelling of concretes incorporating crushed limestone sand with a high content of fillers for pavement slabs

IF 2.2 4区 工程技术 Q2 ENGINEERING, CIVIL
Amal Bousleh, Saloua El Euch Khay
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Abstract

AbstractBecause of the gradual depletion of gravel and river sand resources and restrictions on quarrying activities to maintain the ecological balance, limestone crushed sand with a high content of limestone fillers is being explored to be used, as an alternative source of supply, in Portland cement concrete (PCC) for rigid pavement. This paper aims to first present mechanical test results carried out on three types of PCC formulated with crushed limestone sand as fine aggregates, devoid of superplasticizers. Since shrinkage cracking is an important problem for rigid pavement, the shrinkage behaviour of these concretes is then experimentally investigated. Furthermore, three existing models (ACI-209, Eurocode2, and triple-sphere models) and a novel-developed model are used to estimate the mixtures’ shrinkage. Results showed that the designed mixtures exhibited normal shrinkage values. The shrinkage modelling revealed that the proposed model well fitted the experimental data. Besides, Eurocode2 and ACI-209 models may be adapted for the case of limestone concretes containing a high content of limestone fillers and then used to accurately estimate their shrinkage strains. However, the triple-sphere model was unsuitable for these concretes and overestimated their ultimate shrinkage since it does not take into account their high filler content. Nevertheless, by adjusting the paste shrinkage expression, the ultimate shrinkage strain values of the tested mixtures were improved.Keywords: Rigid pavementconcretecrushed limestone sandShrinkagemodelling Disclosure statementNo potential conflict of interest was reported by the author(s).Data availability statementThe data that support the findings of this study are openly available in Mendeley data at http://doi.org/ 10.17632/d828k98rrk.1.
混凝土的收缩性能和模型结合碎石石灰石砂与高含量的填充物路面板
摘要由于砾石和河砂资源的逐渐枯竭,以及为了维持生态平衡而限制采石活动,人们正在探索将石灰石填料含量高的石灰石碎砂作为一种替代供应来源,用于硅酸盐水泥混凝土(PCC)的刚性路面。本文首先介绍了以石灰石碎砂为细集料,不含高效减水剂配制的三种PCC的力学试验结果。由于收缩开裂是刚性路面的一个重要问题,因此对这些混凝土的收缩行为进行了实验研究。采用ACI-209、Eurocode2和三球模型和一个新开发的模型对混合料的收缩进行了估计。结果表明,设计的混合料具有正常的收缩值。收缩模型表明,该模型与实验数据拟合较好。此外,Eurocode2和ACI-209模型可适用于石灰石混凝土含有高含量石灰石填料的情况,然后用于准确估计其收缩应变。然而,三球模型不适合这些混凝土,高估了它们的最终收缩率,因为它没有考虑到它们的高填料含量。通过调整膏体收缩表达式,提高了试验混合料的极限收缩应变值。关键词:刚性路面混凝土冲砂石灰石收缩模型披露声明作者未报告潜在利益冲突。数据可用性声明支持本研究结果的数据可在Mendeley数据中公开获取,网址为http://doi.org/ 10.17632/d828k98rrk.1。
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来源期刊
European Journal of Environmental and Civil Engineering
European Journal of Environmental and Civil Engineering ENGINEERING, CIVIL-ENGINEERING, GEOLOGICAL
CiteScore
4.80
自引率
4.80%
发文量
153
审稿时长
6 months
期刊介绍: The European Research Area has now become a reality. The prime objective of the EJECE is to fully document advances in International scientific and technical research in the fields of sustainable construction and soil engineering. In particular regard to the latter, the environmental preservation of natural media (soils and rocks) and the mitigation of soil-related risks are now not only major societal challenges, but they are also the source of scientific and technical developments that could be extremely beneficial.
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