Long-term mechanical properties of steel fiber reinforced concrete under sulfuric acid attack

IF 6.7 1区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY
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Abstract

Steel fiber reinforced concrete (SFRC) has significant advantages for preparing pipes, however, concrete sewer pipes are susceptible to deterioration caused by biological acids (i.e., sulfuric acid). In this study, the mechanical properties—including cube compressive strength, axial compressive and flexural properties, and relative dynamic elastic modulus—of SFRC exposed to sulfuric acid for 36 months were monitored. Further, the evolution of the morphology, alkalinity, and mineral phases was also monitored. According to the morphology and pH evolution, SFRC showed rapid corrosion after 12 months of exposure, and the thicknesses of damaged and transition layers reached approximately 2 and 8 mm, respectively, after 36 months. Further, gypsum was formed and deposited on the specimen surface after exposure to sulfuric acid. Although the SFRC did not deteriorate after 12 months of exposure and still showed good mechanical properties, the cube compressive strength of SFRC showed a slight decrease after 36 months of exposure; however, the axial compressive load and flexural load capacities improved, and the flexural toughness also increased as a result of the exposure to sulfuric acid. This study provides valuable evidence for the potential application of SFRC in sewage environments.

Abstract Image

硫酸侵蚀下钢纤维增强混凝土的长期力学性能
钢纤维增强混凝土(SFRC)在制备管道方面具有显著优势,但混凝土下水管道很容易受到生物酸(如硫酸)的影响而发生老化。本研究监测了暴露在硫酸中 36 个月的 SFRC 的力学性能,包括立方体抗压强度、轴向抗压和抗弯性能以及相对动态弹性模量。此外,还对形态、碱度和矿物相的演变进行了监测。根据形态和 pH 值的演变,SFRC 在暴露 12 个月后出现了快速腐蚀,36 个月后受损层和过渡层的厚度分别达到约 2 毫米和 8 毫米。此外,暴露于硫酸后,试样表面形成并沉积了石膏。虽然 SFRC 在暴露 12 个月后没有退化,仍然表现出良好的机械性能,但在暴露 36 个月后,SFRC 的立方体抗压强度略有下降;不过,轴向抗压负荷和抗弯负荷能力有所提高,抗弯韧度也因暴露于硫酸而增加。这项研究为 SFRC 在污水环境中的潜在应用提供了宝贵的证据。
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来源期刊
Tunnelling and Underground Space Technology
Tunnelling and Underground Space Technology 工程技术-工程:土木
CiteScore
11.90
自引率
18.80%
发文量
454
审稿时长
10.8 months
期刊介绍: Tunnelling and Underground Space Technology is an international journal which publishes authoritative articles encompassing the development of innovative uses of underground space and the results of high quality research into improved, more cost-effective techniques for the planning, geo-investigation, design, construction, operation and maintenance of underground and earth-sheltered structures. The journal provides an effective vehicle for the improved worldwide exchange of information on developments in underground technology - and the experience gained from its use - and is strongly committed to publishing papers on the interdisciplinary aspects of creating, planning, and regulating underground space.
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