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钢筋增强超高性能混凝土的腐蚀性能及腐蚀后拉伸行为演变

Corrosion Performance and Post-Corrosion Evolution of Tensile Behaviors in Rebar Reinforced Ultra-High Performance Concrete.

作者信息

Zhang Yuchen, Zhang Sumei, Luo Xianzhi, Wang Chaofan

机构信息

School of Intelligent Civil and Ocean Engineering, Harbin Institute of Technology, Shenzhen, University Town, Shenzhen 518055, China.

Guangdong Provincial Key Laboratory of Intelligent and Resilient Structures for Civil Engineering, Harbin Institute of Technology, Shenzhen, Shezhen 518055, China.

出版信息

Materials (Basel). 2025 Jun 5;18(11):2661. doi: 10.3390/ma18112661.

Abstract

The application of rebar reinforced ultra-high-performance concrete (R-UHPC) has been increasingly adopted in engineering structures due to its exceptional mechanical performance and durability characteristics. Nevertheless, when subjected to combined saline and stray current conditions, R-UHPC remains vulnerable to severe corrosion degradation. This investigation examined the corrosion performance and tensile behavior evolution of R-UHPC containing 2.0 vol% copper-coated steel fiber content and HRB400 steel rebar with a reinforcement ratio of 3.1%. The accelerated corrosion process was induced through an impressed current method, followed by direct tensile tests at varying exposure periods. The findings revealed that the embedding of rebar in UHPC led to the formation of fiber-to-rebar (F-R) conductive pathways, generating radial cracks besides laminar cracks. The bonding between rebar and UHPC degraded as corrosion progressed, leading to the loss of characteristic multiple-cracking behavior of R-UHPC in tension. Meanwhile, R-UHPC load-bearing capacity, transitioning from gradual to accelerated deterioration phases with prolonged corrosion, aligns with steel fibers temporally. During the initial 4 days of corrosion, the specimens displayed surface-level corrosion features with negligible steel fiber loss, showing less than 4.0% reduction in ultimate bearing capacity. At 8 days of corrosion, the steel fiber decreased by 22.6%, accompanied by an 18.3% reduction in bearing capacity. By 16 days of corrosion, the steel fiber loss reached 41.5%, with a corresponding bearing capacity reduction of 29.1%. During the corrosion process, corrosion cracks and load-bearing degradation in R-UHPC could be indicated by the ultrasonic damage factor.

摘要

由于其卓越的力学性能和耐久性特点,钢筋增强超高性能混凝土(R-UHPC)在工程结构中的应用越来越广泛。然而,在盐溶液和杂散电流共同作用的条件下,R-UHPC仍然容易受到严重的腐蚀破坏。本研究考察了含2.0体积%镀铜钢纤维和配筋率为3.1%的HRB400钢筋的R-UHPC的腐蚀性能和拉伸行为演变。通过外加电流法引发加速腐蚀过程,然后在不同暴露时间进行直接拉伸试验。研究结果表明,在超高性能混凝土中埋入钢筋会形成纤维-钢筋(F-R)导电通路,除了产生层状裂缝外还会产生径向裂缝。随着腐蚀的进行,钢筋与超高性能混凝土之间的粘结性能下降,导致R-UHPC在拉伸时失去典型的多重开裂行为。同时,R-UHPC的承载能力随着腐蚀时间的延长从逐渐劣化阶段转变为加速劣化阶段,在时间上与钢纤维的变化一致。在腐蚀的最初4天,试件呈现出表面腐蚀特征,钢纤维损失可忽略不计,极限承载能力降低不到4.0%。在腐蚀8天时,钢纤维减少了22.6%,同时承载能力降低了18.3%。到腐蚀16天时,钢纤维损失达到41.5%,相应的承载能力降低了29.1%。在腐蚀过程中,R-UHPC中的腐蚀裂缝和承载能力劣化可以用超声损伤因子来表征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d43/12156256/49ffce581675/materials-18-02661-g001.jpg

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