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不同高效减水剂对受碱-硅酸反应(ASR)影响的混凝土劣化的影响

The Impact of Distinct Superplasticizers on the Degradation of Concrete Affected by Alkali-Silica Reaction (ASR).

作者信息

Zahedi Andisheh, Trottier Cassandra, Zhu Yufeng, Sanchez Leandro F M

机构信息

Department of Civil Engineering, Faculty of Engineering, University of Ottawa, Ottawa, ON K1N 6N5, Canada.

出版信息

Materials (Basel). 2023 Apr 25;16(9):3374. doi: 10.3390/ma16093374.

Abstract

The effect of two superplasticizers (SPs) with various equivalent (eq.) alkali contents (i.e., with 0.00009% and 4.1% of NaO, respectively) on the development of an alkali-silica reaction (ASR) was investigated through the use of multilevel assessment. This testing protocol showed promising results for evaluating concrete damage due to ASRs based on mechanical and microscopical testing protocols, specifically the stiffness damage test (SDT) and the damage rating index (DRI). Concrete specimens that incorporated the aforementioned SPs and distinct reactive aggregates (coarse and fine) were manufactured and then stored in conditions that enabled ASR development and were monitored over time. Upon reaching the desired expansion levels of this study, the concrete specimens were prepared for the multilevel assessment. The results show that the SP-incorporated concrete specimens with lower and higher alkali content yielded lower and higher deterioration results, respectively. This clearly confirms that while SP-incorporated concrete that contains SPs with a higher alkali content could increase the risk of ASR deterioration, those SPs with a very low amount of alkali content could act as a mitigation strategy against ASRs. Finally, an investigation into the influence of distinct SPs on the chemical composition of an ASR gel was conducted, which confirmed that the SP with a higher alkali content had the highest potential for further deterioration.

摘要

通过多级评估研究了两种具有不同等效(eq.)碱含量(分别为0.00009%和4.1%的NaO)的高效减水剂(SPs)对碱-硅酸反应(ASR)发展的影响。该测试方案基于力学和微观测试方案,特别是刚度损伤试验(SDT)和损伤评级指数(DRI),在评估ASR引起的混凝土损伤方面显示出了有前景的结果。制备了掺入上述SPs和不同活性骨料(粗骨料和细骨料)的混凝土试件,然后将其储存在能够使ASR发展的条件下,并随时间进行监测。在达到本研究所需的膨胀水平后,对混凝土试件进行多级评估。结果表明,掺入碱含量较低和较高的SPs的混凝土试件分别产生了较低和较高的劣化结果。这清楚地证实,虽然含有碱含量较高的SPs的掺入SPs的混凝土可能会增加ASR劣化的风险,但那些碱含量非常低的SPs可以作为对抗ASR的缓解策略。最后,对不同SPs对ASR凝胶化学成分的影响进行了研究,证实碱含量较高的SPs具有进一步劣化的最大可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b7ad/10180466/bae431f606b8/materials-16-03374-g001.jpg

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