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暴露于侵蚀性环境中的改性橡胶混凝土性能评估

Performance Evaluation of Modified Rubberized Concrete Exposed to Aggressive Environments.

作者信息

M Mhaya Akram, Baghban Mohammad Hajmohammadian, Faridmehr Iman, Huseien Ghasan Fahim, Abidin Ahmad Razin Zainal, Ismail Mohammad

机构信息

School of Civil Engineering, Faculty of Engineering, Universiti Teknologi Malaysia, Skudai 81310, Johor, Malaysia.

Department of Manufacturing and Civil Engineering, Norwegian University of Science and Technology (NTNU), 2815 Gjøvik, Norway.

出版信息

Materials (Basel). 2021 Apr 11;14(8):1900. doi: 10.3390/ma14081900.

Abstract

Recycling of the waste rubber tire crumbs (WRTCs) for the concretes production generated renewed interest worldwide. The insertion of such waste as a substitute for the natural aggregates in the concretes is an emergent trend for sustainable development towards building materials. Meanwhile, the enhanced resistance of the concrete structures against aggressive environments is important for durability, cost-saving, and sustainability. In this view, this research evaluated the performance of several modified rubberized concretes by exposing them to aggressive environments i.e., acid, and sulphate attacks, elevated temperatures. These concrete (12 batches) were made by replacing the cement and natural aggregate with an appropriate amount of the granulated blast furnace slag (GBFS) and WRTCs, respectively. The proposed mix designs' performance was evaluated by several measures, including the residual compressive strength (CS), weight loss, ultrasonic pulse velocity (UPV), microstructures, etc. Besides, by using the available experimental test database, an optimized artificial neural network (ANN) combined with the particle swarm optimization (PSO) was developed to estimate the residual CS of modified rubberized concrete after immersion one year in MgSO and HSO solutions. The results indicated that modified rubberized concrete prepared by 5 to 20% WRTCs as a substitute to natural aggregate, provided lower CS and weight lose expose to sulphate and acid attacks compared to control specimen prepared by ordinary Portland cement (OPC). Although the CS were slightly declined at the elevated temperature, these proposed mix designs have a high potential for a wide variety of concrete industrial applications, especially in acid and sulphate risk.

摘要

利用废旧橡胶轮胎颗粒(WRTCs)生产混凝土在全球范围内引起了新的关注。将此类废弃物作为天然骨料的替代品掺入混凝土中,是建筑材料可持续发展的一个新兴趋势。同时,提高混凝土结构对侵蚀性环境的抵抗力对于耐久性、成本节约和可持续性至关重要。基于此,本研究通过将几种改性橡胶混凝土暴露于侵蚀性环境(即酸和硫酸盐侵蚀、高温)中来评估其性能。这些混凝土(12组)分别通过用适量的粒化高炉矿渣(GBFS)和WRTCs替代水泥和天然骨料制成。通过包括残余抗压强度(CS)、重量损失、超声脉冲速度(UPV)、微观结构等多种指标来评估所提出的配合比设计的性能。此外,利用现有的试验数据库,开发了一种结合粒子群优化(PSO)的优化人工神经网络(ANN),以估计改性橡胶混凝土在MgSO₄和H₂SO₄溶液中浸泡一年后的残余CS。结果表明,用5%至20%的WRTCs替代天然骨料制备的改性橡胶混凝土,与普通硅酸盐水泥(OPC)制备的对照试件相比,在硫酸盐和酸侵蚀下的CS和重量损失较低。尽管在高温下CS略有下降,但这些所提出的配合比设计在各种混凝土工业应用中具有很大潜力,特别是在存在酸和硫酸盐风险的情况下。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/41f9/8069696/267b88915dbc/materials-14-01900-g001.jpg

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