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A Review on Alkali-Silica Reaction Evolution in Recycled Aggregate Concrete

机译:再生骨料混凝土中碱 - 二氧化硅反应进化的综述

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摘要

Alkali-silica reaction (ASR) is one of the major degradation causes of concrete. This highly deleterious reaction has aroused the attention of researchers, in order to develop methodologies for its prevention and mitigation, but despite the efforts made, there is still no efficient cure to control its expansive consequences. The incorporation of recycled aggregates in concrete raises several ASR issues, mainly due to the difficult control of the source concrete reactivity level and the lack of knowledge on ASR’s evolution in new recycled aggregate concrete. This paper reviews several research works on ASR in concrete with recycled aggregates, and the main findings are presented in order to contribute to the knowledge and discussion of ASR in recycled aggregate concrete. It has been observed that age, exposure conditions, crushing and the heterogeneity source can influence the alkalis and reactive silica contents in the recycled aggregates. The use of low contents of highly reactive recycled aggregates as a replacement for natural aggregates can be done without an increase in expansion of concrete. ASR expansion tests and ASR mitigation measures need to be further researched to incorporate a higher content of recycled aggregates.
机译:碱 - 二氧化硅反应(ASR)是混凝土的主要降解原因之一。这种高度有害的反应引起了研究人员的关注,以便制定预防和缓解方法,但尽管所做的努力,但仍然没有有效的治疗能力来控制其扩张后果。再生骨料在混凝土中掺入提出了几个问题,ASR,主要是由于源的具体反应性水平的控制困难和ASR的新再生混凝土发展的认识不足。本文评论了几项研究工作,在与再生综合体的混凝土中的一些研究,并提出了主要调查结果,以便为循环骨料混凝土中的ASR知识和讨论做出贡献。已经观察到,年龄,暴露条件,破碎和异质性源可以影响再循环聚集体中的碱和反应性二氧化硅含量。可以在没有膨胀混凝土的情况下使用作为自然聚集体的替代物的高反应性再循环聚集体的低含量。需要进一步研究ASR扩展测试和ASR缓解措施,以纳入更高的再循环骨料含量。

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