用透水结晶材料增强骨料后再生混凝土的耐久性

IF 1.5 4区 工程技术 Q3 CONSTRUCTION & BUILDING TECHNOLOGY Advances in Civil Engineering Pub Date : 2024-03-07 DOI:10.1155/2024/9978563
Jinsong Liao, Fuhai Li, Jing Gong, Lei Zhao, Xi Tong, Xinxin Li
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引用次数: 0

摘要

利用再生骨料可以大大减少天然砂石的开采量。然而,由于再生骨料具有高吸水性、高压碎性和低表观密度等固有特性,其在工程中的实际应用受到了阻碍。本研究采用浸泡和风干的方法,利用渗透结晶材料提高三种初始强度不同的骨料的强度。研究了三种不同骨料替代率(0%、50% 和 100%)的再生骨料混凝土(RAC)的耐久性。试验结果表明,随着骨料替代率的增加,再生骨料混凝土的坍落度、抗压强度、抗冻性和抗碳化性均呈下降趋势。加入渗透结晶材料后,RAC 的抗冻性和抗碳化性明显增强。这项研究有助于为建筑垃圾的处理提供一种可持续的高效解决方案,从而提高再生混凝土的利用率。
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Durability of Recycled Concrete after Reinforcing the Aggregates with Permeable Crystalline Materials
The utilization of recycled aggregate can significantly mitigate the extraction of natural sand and gravel. However, the practical application of recycled aggregate in engineering is impeded by its inherent characteristics, encompassing high water absorption, high crushing, and low apparent density. This study employed a soaking and air-drying method to enhance the strength of three types of aggregates with varying initial strengths by utilizing permeated crystalline materials. The durability of recycled aggregate concrete (RAC) was studied with three different aggregate replacement rates (0%, 50%, and 100%). The test results demonstrate that the slump, compressive strength, freeze resistance, and carbonation resistance of RAC exhibit a decreasing trend as the aggregate replacement rate increases. The freeze resistance and carbonation resistance of RAC are notably enhanced after incorporating permeated crystalline material. This study contributes to a sustainable and efficient solution for the treatment of construction waste, thereby enhancing the utilization rate of recycled concrete.
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来源期刊
Advances in Civil Engineering
Advances in Civil Engineering Engineering-Civil and Structural Engineering
CiteScore
4.00
自引率
5.60%
发文量
612
审稿时长
15 weeks
期刊介绍: Advances in Civil Engineering publishes papers in all areas of civil engineering. The journal welcomes submissions across a range of disciplines, and publishes both theoretical and practical studies. Contributions from academia and from industry are equally encouraged. Subject areas include (but are by no means limited to): -Structural mechanics and engineering- Structural design and construction management- Structural analysis and computational mechanics- Construction technology and implementation- Construction materials design and engineering- Highway and transport engineering- Bridge and tunnel engineering- Municipal and urban engineering- Coastal, harbour and offshore engineering-- Geotechnical and earthquake engineering Engineering for water, waste, energy, and environmental applications- Hydraulic engineering and fluid mechanics- Surveying, monitoring, and control systems in construction- Health and safety in a civil engineering setting. Advances in Civil Engineering also publishes focused review articles that examine the state of the art, identify emerging trends, and suggest future directions for developing fields.
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