Effect of PVA fibers on durability of nano-SiO2-reinforced cement-based composites subjected to wet-thermal and chloride salt-coupled environment

IF 6.1 3区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Jia Su, Peng Zhang, Jinjun Guo, Yuanxun Zheng
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Abstract

Abstract Marine engineering structures are often faced with complex environmental factors. It is the focus of current research to modify cement-based composites (CBCs) to achieve their high durability in complex environments such as seawater. In this study, the effect of polyvinyl alcohol (PVA) fibers on durability of nano-SiO 2 (NS)-reinforced cement-based composites was investigated by simulating seawater environment and taking PVA fiber content as variable. In addition, based on the Weibull probability distribution model, the damage degree of NS and PVA fiber-reinforced cement-based composites (NFRCCs) subjected to wet-thermal and chloride salt-coupled environment (WTCSE) after 300 freeze–thawing cycles (FTCs) was predicted. The test results demonstrated that the NFRCC exhibited the most excellent durability subjected to WTCSE when the content of PVA fibers was 1.2%. Compared with the reference group only doped with NS subjected to WTCSE, its impermeability pressure increased by 150%, the chloride ion electric flux decreased by 31.71%, the compressive strength loss rate decreased by 19.00% after 125 FTC, and the compressive strength corrosion resistance coefficient of chloride salt erosion increased by 9.15% after 25 wetting–drying cycles. The predicted results of the Weibull probability distribution model indicated that the damage degree of NFRCC subjected to WTCSE after 300 FTC would not exceed 0.35. The microscopic test analysis showed that the incorporation of PVA fibers reduced the proportion of large pores and the overall porosity of NFRCC subjected to WTCSE. PVA fibers bridged microcracks while adsorbing NS and its hydration products, thus enhancing the adhesion of the substrate. This study provides a reference for the research of high-performance CBC in complex environment.
PVA纤维对纳米二氧化硅增强水泥基复合材料湿热和氯盐耦合环境耐久性的影响
摘要海洋工程结构经常面临复杂的环境因素。改性水泥基复合材料(CBCs)以使其在海水等复杂环境中具有高耐久性是当前研究的重点。本文以聚乙烯醇(PVA)纤维含量为变量,模拟海水环境,研究了聚乙烯醇(PVA)纤维对纳米二氧化硅(NS)增强水泥基复合材料耐久性的影响。此外,基于Weibull概率分布模型,预测了NS和PVA纤维增强水泥基复合材料(nfrcc)在300次冻融循环(FTCs)后的湿-热-氯盐耦合环境(WTCSE)下的损伤程度。试验结果表明,当PVA纤维掺量为1.2%时,NFRCC在WTCSE作用下的耐久性最佳。与仅掺NS的对照组相比,经WTCSE处理后,其抗渗压力提高了150%,氯离子电通量降低了31.71%,125 FTC后抗压强度损失率降低了19.00%,25次干湿循环后抗压强度抗氯盐侵蚀腐蚀系数提高了9.15%。Weibull概率分布模型预测结果表明,300 FTC后NFRCC的WTCSE损伤程度不超过0.35。微观试验分析表明,PVA纤维的掺入降低了WTCSE作用下NFRCC的大孔隙比例和整体孔隙率。PVA纤维在吸附NS及其水化产物的同时桥接微裂缝,从而增强了基材的附着力。本研究为复杂环境下高性能CBC的研究提供了参考。
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
Nanotechnology Reviews
Nanotechnology Reviews CHEMISTRY, MULTIDISCIPLINARY-NANOSCIENCE & NANOTECHNOLOGY
CiteScore
11.40
自引率
13.50%
发文量
137
审稿时长
7 weeks
期刊介绍: The bimonthly journal Nanotechnology Reviews provides a platform for scientists and engineers of all involved disciplines to exchange important recent research on fundamental as well as applied aspects. While expert reviews provide a state of the art assessment on a specific topic, research highlight contributions present most recent and novel findings. In addition to technical contributions, Nanotechnology Reviews publishes articles on implications of nanotechnology for society, environment, education, intellectual property, industry, and politics.
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