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含再生骨料和石灰石的自密实混凝土的全面特性研究

Full Characterization of Self-Compacting Concrete Containing Recycled Aggregates and Limestone.

作者信息

Guessoum Meriem, Boukhelf Fouad, Khadraoui Fouzia

机构信息

Builders Ecole d'Ingénieurs, Builders Lab, ComUE NU (Communauté Universitaire de Normandie Université), 1 Rue Pierre et Marie Curie, 14610 Epron, France.

出版信息

Materials (Basel). 2023 Aug 26;16(17):5842. doi: 10.3390/ma16175842.

Abstract

This work deals with the study of self-compacting concretes (SCCs) containing recycled aggregates (RAs) recovered from demolition waste and limestone filler as a partial replacement for natural aggregates (NAs) and cement, respectively. Four mix designs were developed and characterized in both the fresh and hardened states. In the fresh state, the properties studied included slump, sieve stability, and t viscosity. In the hardened state, the properties studied were compressive strength and porosity at 15 h and 28 days, thermogravimetric analysis, and durability tests involving freeze-thaw cycles and accelerated carbonation. The results indicate the RAs lead to a decrease in slump flow. However, the substitution rate of aggregate replacement does not affect the compressive strength. This can be attributed to the optimized mix design, resulting in all SCC mixtures achieving the same compressive strength class of 30-35 MPa. As for the durability tests, the incorporation of recycled aggregates modifies the behavior of the concrete during freeze-thaw cycles. Throughout the 300 freeze-thaw cycles, all concrete mixtures exhibited a mass loss accompanied by a slight strain increase, but the materials remained visually intact. Additionally, the carbonation depth is strongly influenced by the rate of aggregate replacement due to changes in the microstructure, particularly in porosity.

摘要

本研究探讨了含有从拆除废料中回收的再生骨料(RA)和石灰石粉的自密实混凝土(SCC),其中石灰石粉分别部分替代天然骨料(NA)和水泥。开发了四种配合比设计,并对其新拌状态和硬化状态进行了表征。在新拌状态下,研究的性能包括坍落度、筛析稳定性和t粘度。在硬化状态下,研究的性能有15小时和28天时的抗压强度和孔隙率、热重分析以及包括冻融循环和加速碳化的耐久性试验。结果表明,再生骨料会导致坍落扩展度降低。然而,骨料替代率并不影响抗压强度。这可归因于优化的配合比设计,使得所有自密实混凝土混合物均达到30 - 35MPa的相同抗压强度等级。至于耐久性试验,再生骨料的掺入改变了混凝土在冻融循环期间的性能。在整个300次冻融循环中,所有混凝土混合物均出现质量损失并伴有轻微应变增加,但材料外观仍保持完好。此外,由于微观结构的变化,特别是孔隙率的变化,碳化深度受到骨料替代率的强烈影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3164/10488524/459663dc07de/materials-16-05842-g001.jpg

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