High-Temperature and Acid Resistance of Concrete with Recycled, Desert Sand, and Crumb Rubber Blends.

IF 3.2 3区 材料科学 Q3 CHEMISTRY, PHYSICAL
Materials Pub Date : 2025-09-22 DOI:10.3390/ma18184410
Mohammad Nadeem Akhtar, Khaldoon A Bani-Hani, Jan Nisar Akhtar
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Abstract

Natural sand extraction for concrete manufacturing is a global issue for ecological balance and environmental concerns. This study introduced three mixes with three newly developed sand types to replace natural sand in concrete manufacturing. Additionally, three more mixes were made by incorporating optimized 10% silica fume. The durability of the prepared mixes was evaluated at high temperatures of (150-750 °C) at the interval of 150 °C and against immersion in a 5% sulfuric acid solution for 28, 56, 91, and 182 days, respectively. The study's results reported the stability of the samples up to 300 °C, and then the fall of the samples started at 450 °C. Severe damage in the samples was formed at about 600 °C, and finally, a total collapse was seen at 750 °C. From (150 to 750 °C), the mix TYPE-3SSFC with a sustainable sand combination (50% recycled sand + 45% desert sand + 5% crumb rubber) and 10% silica fume showed better resistance than the other mixes. The compressive strength in the mix TYPE-3SSFC was 20.6%, 16.3%, 14.7%, 21.3%, 26.5%, and 43.2% higher than the mix TYPE-3SC with 10% silica fume. The mix TYPE-3SSFC with optimized 10% silica fume content showed better resistance against 5% sulfuric acid solution than those without silica fume. By morphological analysis, the mix TYPE-3SSFC showed that the interface improved due to the dense interconnectivity of the concrete mix between the crumb rubber paste and silica fume content. A dense calcite crystal was also seen in the mixture, which confirmed the study's results. The mix with TYPE 2-Sand (100% recycled sand) revealed inferior results, low stability, and high damage. Thus, 100% recycled sand is not recommended for structural concrete.

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再生、沙漠砂和橡胶屑共混物混凝土的耐高温耐酸性能。
用于混凝土制造的天然砂提取是一个全球性的生态平衡和环境问题。本文介绍了三种新开发的砂型的三种配合比,以替代混凝土生产中的天然砂型。此外,通过加入优化的10%硅粉制成了另外三种混合物。在150°C的高温下(150-750°C),以及在5%硫酸溶液中浸泡28天、56天、91天和182天,分别对制备的混合物的耐久性进行了评估。该研究的结果报告了样品在300°C时的稳定性,然后样品在450°C时开始下降。样品在600℃左右形成严重的损伤,在750℃左右完全坍塌。在(150 ~ 750°C)范围内,由可持续砂(50%再生砂+ 45%沙漠砂+ 5%橡胶屑)和10%硅灰组成的3ssfc型混合料比其他混合料表现出更好的耐磨性。3ssfc混合料的抗压强度分别比添加10%硅粉的3sc混合料高20.6%、16.3%、14.7%、21.3%、26.5%和43.2%。硅灰掺量为10%的3ssfc对5%硫酸溶液的耐受性优于不掺硅灰的3ssfc。通过形貌分析,3ssfc型混合料表明,由于颗粒橡胶膏与硅灰掺量之间的紧密互联,混凝土混合料的界面得到改善。在混合物中还发现了致密的方解石晶体,这证实了研究结果。与TYPE - 2砂(100%再生砂)混合的结果较差,稳定性低,破坏程度高。因此,不建议在结构混凝土中使用100%再生砂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Materials
Materials MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
5.80
自引率
14.70%
发文量
7753
审稿时长
1.2 months
期刊介绍: Materials (ISSN 1996-1944) is an open access journal of related scientific research and technology development. It publishes reviews, regular research papers (articles) and short communications. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. Therefore, there is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Materials provides a forum for publishing papers which advance the in-depth understanding of the relationship between the structure, the properties or the functions of all kinds of materials. Chemical syntheses, chemical structures and mechanical, chemical, electronic, magnetic and optical properties and various applications will be considered.
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