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不同细度粉煤灰和磨细砂取代水泥对砂浆碱-硅酸反应的影响

Influence of Cement Replacement with Fly Ash and Ground Sand with Different Fineness on Alkali-Silica Reaction of Mortar.

作者信息

Ramjan Suwat, Tangchirapat Weerachart, Jaturapitakkul Chai, Chee Ban Cheah, Jitsangiam Peerapong, Suwan Teewara

机构信息

Building Control Bureau, Department of Public Works and Town & Country Planning, Bangkok 10140, Thailand.

Construction Innovations and Future Infrastructure Research Center (CIFIR), Department of Civil Engineering, Faculty of Engineering, King Mongkut's University of Technology Thonburi, Bangkok 10140, Thailand.

出版信息

Materials (Basel). 2021 Mar 20;14(6):1528. doi: 10.3390/ma14061528.

Abstract

The alkali-silica reaction (ASR) is an important consideration in ensuring the long-term durability of concrete materials, especially for those containing reactive aggregates. Although fly ash (FA) has proven to be useful in preventing ASR expansion, the filler effect and the effect of FA fineness on ASR expansion are not well defined in the present literature. Hence, this study aimed to examine the effects of the filler and fineness of FA on ASR mortar expansion. FAs with two different finenesses were used to substitute ordinary Portland cement (OPC) at 20% by weight of binder. River sand (RS) with the same fineness as the FA was also used to replace OPC at the same rate as FA. The replacement of OPC with RS (an inert material) was carried out to observe the filler effect of FA on ASR. The results showed that FA and RS provided lower ASR expansions compared with the control mortar. Fine and coarse fly ashes in this study had almost the same effectiveness in mitigating the ASR expansion of the mortars. For the filler effect, smaller particles of RS had more influence on the ASR reduction than RS with coarser particles. A significant mitigation of the ASR expansion was obtained by decreasing the OPC content in the mortar mixture through its partial substitution with FA and RS.

摘要

碱-硅酸反应(ASR)是确保混凝土材料长期耐久性的一个重要考虑因素,对于那些含有活性集料的材料尤其如此。尽管粉煤灰(FA)已被证明可有效防止ASR膨胀,但目前文献中对粉煤灰的填充效应及其细度对ASR膨胀的影响并未明确界定。因此,本研究旨在考察粉煤灰的填充作用及其细度对ASR砂浆膨胀的影响。采用两种不同细度的粉煤灰,以占胶凝材料重量20%的比例替代普通硅酸盐水泥(OPC)。还使用了与粉煤灰细度相同的河砂(RS),以与粉煤灰相同的比例替代OPC。用河砂(一种惰性材料)替代OPC,以观察粉煤灰对ASR的填充效应。结果表明,与对照砂浆相比,粉煤灰和河砂使ASR膨胀降低。本研究中的细粉煤灰和粗粉煤灰在减轻砂浆的ASR膨胀方面效果几乎相同。对于填充效应而言,粒径较小的河砂颗粒比粒径较大的河砂颗粒对降低ASR的影响更大。通过用粉煤灰和河砂部分替代砂浆混合物中的OPC来降低OPC含量,可显著减轻ASR膨胀。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/554a/8004033/2334a10cfa02/materials-14-01528-g001.jpg

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