Wang Weijia, Wang Jimin, Wang Jinting, He Jinrong, Pan Jianwen
State Key Laboratory of Hydroscience and Engineering, Tsinghua University, Beijing 100084, China.
Yalong River Hydropower Development Co., Ltd., Chengdu 610056, China.
Materials (Basel). 2022 May 28;15(11):3861. doi: 10.3390/ma15113861.
The alkali-aggregate reaction (AAR) is a harmful chemical reaction that reduces the mechanical properties and weakens the durability of concrete. Different types of activated aggregates may result in various AAR modes, which affect the mechanical deterioration of concrete. In this paper, the aggregate expansion model and the gel pocket model are considered to represent the two well-recognized AAR modes. The mesoscale particle model of concrete was presented to model the AAR expansion process and the splitting tensile behavior of AAR-affected concrete. The numerical results show that different AAR modes have a great influence on the development of AAR in terms of expansion and microcracks and the deterioration of concrete specimens. The AAR mode of the gel pocket model causes slight expansion, but generates microcracks in the concrete at the early stage of AAR. This means there is difficulty in achieving early warning and timely maintenance of AAR-affected concrete structures based on the monitoring expansion. Compared with the aggregate expansion model, more severe cracking can be observed, and a greater loss of tensile strength is achieved at the same AAR expansion in the gel pocket model. AAR modes determine the subsequent reaction process and deterioration, and thus, it is necessary to develop effective detection methods and standards for large concrete projects according to different reactive aggregates.
碱-骨料反应(AAR)是一种有害的化学反应,它会降低混凝土的力学性能并削弱其耐久性。不同类型的活性骨料可能导致各种AAR模式,这会影响混凝土的力学劣化。本文中,骨料膨胀模型和凝胶袋模型被视为两种公认的AAR模式。提出了混凝土的细观颗粒模型,以模拟AAR膨胀过程以及受AAR影响的混凝土的劈裂拉伸行为。数值结果表明,不同的AAR模式在膨胀、微裂纹以及混凝土试件劣化方面对AAR的发展有很大影响。凝胶袋模型的AAR模式会导致轻微膨胀,但在AAR早期会在混凝土中产生微裂纹。这意味着基于监测膨胀来实现对受AAR影响的混凝土结构的早期预警和及时维护存在困难。与骨料膨胀模型相比,在凝胶袋模型中,在相同的AAR膨胀情况下,可以观察到更严重的开裂,并且抗拉强度损失更大。AAR模式决定了后续的反应过程和劣化情况,因此,有必要根据不同的活性骨料为大型混凝土工程制定有效的检测方法和标准。