Pedro Diogo, Guedes Mafalda, de Brito Jorge, Evangelista Luís
CERIS, Instituto Superior Técnico, Universidade de Lisboa,Av. Rovisco Pais, 1049-001 Lisboa,Portugal.
CDP2T and Department of Mechanical Engineering,Escola Superior de Tecnologia de Setúbal, Instituto Politécnico de Setúbal,2910-761 Setúbal,Portugal.
Microsc Microanal. 2019 Jun;25(3):601-616. doi: 10.1017/S1431927619000096. Epub 2019 Mar 4.
The use of concrete-recycled aggregates to produce high-performance concrete is limited by insufficient correlation between resulting microstructure and its influence on mechanical performance reproducibility. This work addresses this issue in a sequential approach: concrete microstructure was systematically analyzed and characterized by scanning electron microscopy and results were correlated with concrete compressive strength and water absorption ability. The influence of replacing natural aggregates (NA) with recycled concrete aggregates (RCA), with different source concrete strength levels, of silica fume (SF) addition and of mixing procedure was tested. The results show that the developed microstructure depends on the concrete composition and is conditioned by the distinct nature of NA, recycled aggregates from high-strength source concrete, and recycled aggregates from low-strength source concrete. SF was only effective at concrete densification when a two-stage mixing approach was used. The highest achieved strength in concrete with 100% incorporation of RCA was 97.3 MPa, comparable to that of conventional high-strength concrete with NA. This shows that incorporation of significant amounts of RCA replacing NA in concrete is not only a realistic approach to current environmental goals, but also a viable route for the production of high-performance concrete.
利用混凝土再生骨料生产高性能混凝土受到限制,因为所得微观结构与其对力学性能再现性的影响之间的相关性不足。本研究采用一种循序渐进的方法来解决这个问题:通过扫描电子显微镜对混凝土微观结构进行系统分析和表征,并将结果与混凝土抗压强度和吸水能力相关联。测试了用不同来源混凝土强度等级的再生混凝土骨料(RCA)替代天然骨料(NA)、添加硅灰(SF)以及搅拌程序的影响。结果表明,所形成的微观结构取决于混凝土组成,并受NA、高强度源混凝土再生骨料和低强度源混凝土再生骨料的不同性质影响。只有采用两阶段搅拌方法时,SF才对混凝土致密化有效。100%掺入RCA的混凝土所达到的最高强度为97.3MPa,与使用NA的传统高强度混凝土相当。这表明在混凝土中大量掺入RCA替代NA不仅是实现当前环境目标的切实可行方法,也是生产高性能混凝土的可行途径。