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Structural implications of internal swelling reactions in concrete: review and research needs

机译:混凝土内部溶胀反应的结构意义:综述和研究需求

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摘要

The chemical and physical processes associated with alkali-aggregate reaction and delayed ettringite formation, otherwise known as internal swelling reactions (ISRs), have been the subject of considerable research spanning several decades, yet the implications for affected structures are still open to debate. A major knowledge gap currently exists between the diagnosis and prognosis of ISR mechanisms, and the quantification and management of risk associated with ISR expansion in structures. This lack of understanding of the effects of ISRs on structural behaviour may be attributed to the fact that parameters such as confinement, boundary conditions, anisotropy and loading conditions are complex and vary greatly in existing structures. Furthermore, the correlation between the results of microscopic/macroscopic analyses on concrete core samples and the in situ performance of large-scale structures is still not well understood, even at a fundamental level. The aim of this paper is to summarise current knowledge of the structural implications of ISR mechanisms in concrete structures and stimulate a discussion of the importance of pursuing multi-scale experimental testing programs for the assessment of ageing infrastructure. A parametric analysis is included using the software VecTor2.
机译:与碱-骨料反应和延迟的钙矾石形成相关的化学和物理过程,也称为内部溶胀反应(ISR),已经成为数十年间大量研究的主题,但是对受影响结构的影响尚有争议。当前,ISR机制的诊断和预后以及与结构中ISR扩展相关的风险的量化和管理之间存在着主要的知识鸿沟。对ISR对结构行为的影响缺乏了解可能是由于这样的事实,即约束,边界条件,各向异性和荷载条件等参数非常复杂,并且在现有结构中变化很大。此外,对混凝土核心样品的微观/宏观分析结果与大型结构的现场性能之间的相关性,即使在基本水平上,仍未得到很好的理解。本文的目的是总结有关ISR机制在混凝土结构中的结构含义的最新知识,并激发对采用多尺度实验测试程序评估老化基础设施的重要性的讨论。使用软件VecTor2可以进行参数分析。

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