Comprehensive review on virgin and reclaimed PET fiber concrete integrating surface treatment

IF 2.7 4区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES
S. M. D. V. Suraweera, Sudhira De Silva, Chamila Gunasekara, David W. Law, Champika Ellawala, Sujeeva Setunge
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Abstract

Studies have explored the engineering properties of Polyethylene Terephthalate (PET) fiber-reinforced concrete, including mechanical strength, crack control, and durability. However, a comprehensive analysis incorporating surface treatment is lacking. This paper provides an extensive analytical database, including previous literature on the mechanical and durability properties of PET fiber-reinforced concrete and the effects of fiber surface treatment on concrete performance. Furthermore, the microstructural and pore-structural properties of PET fiber-reinforced concrete are discussed, detailing the mechanisms behind these properties. This examines the effect of incorporating virgin and recycled PET fibers at mass percentages (wt%) of 0–2 and volume percentage (v%) of 0–12 of total mass/volume. Key findings include that the optimum PET fiber content for tensile and flexural strength is 0.5 v%, while higher contents cause fiber balling, reducing concrete’s performance. Notably, PET fiber-reinforced concrete shows a maximum compressive strength loss of 24% in 3% H2SO4 and 10% loss in pH 12.6 alkaline medium after 120 days. Surface treatment with 20 wt% NaOH and Silane improves compressive strength from 54 to 60 MPa. PET fiber coating with Graphene-oxide and Polydopamine increases frictional and chemical bonding in concrete by 85 and 70%, respectively. The study concludes that surface treatments enhance concrete properties by improving bonding and minimizing fiber degradation.

Abstract Image

原纤维与再生纤维混凝土综合表面处理综述
研究探讨了聚对苯二甲酸乙二醇酯(PET)纤维增强混凝土的工程性能,包括机械强度、裂缝控制和耐久性。然而,缺乏结合表面处理的综合分析。本文提供了一个广泛的分析数据库,包括先前关于PET纤维增强混凝土的力学和耐久性性能以及纤维表面处理对混凝土性能的影响的文献。此外,还讨论了PET纤维增强混凝土的微观结构和孔隙结构性能,详细介绍了这些性能背后的机制。本研究考察了在0-2的质量百分比(wt%)和0-12的总质量/体积百分比(v%)下掺入原生和再生PET纤维的效果。主要研究结果包括:拉伸和弯曲强度的最佳PET纤维含量为0.5 v%,而较高的含量会导致纤维成球,降低混凝土的性能。值得注意的是,120天后,PET纤维增强混凝土在3% H2SO4中最大抗压强度损失为24%,在pH 12.6碱性介质中最大抗压强度损失为10%。用20 wt%的NaOH和硅烷进行表面处理,可将抗压强度从54提高到60 MPa。含有氧化石墨烯和聚多巴胺的PET纤维涂层分别使混凝土中的摩擦力和化学键增加了85%和70%。研究得出结论,表面处理通过改善粘合和减少纤维降解来提高混凝土性能。
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来源期刊
CiteScore
5.30
自引率
16.10%
发文量
205
审稿时长
4.8 months
期刊介绍: The Journal of Material Cycles and Waste Management has a twofold focus: research in technical, political, and environmental problems of material cycles and waste management; and information that contributes to the development of an interdisciplinary science of material cycles and waste management. Its aim is to develop solutions and prescriptions for material cycles. The journal publishes original articles, reviews, and invited papers from a wide range of disciplines related to material cycles and waste management. The journal is published in cooperation with the Japan Society of Material Cycles and Waste Management (JSMCWM) and the Korea Society of Waste Management (KSWM).
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