Ma Wenqi, Zhang Renchi, Li Xiang, Cheng Xiaokang, Xiong Yongming
School of Civil Engineering, Changde Vocational Technical College, Changde 415000, China.
China Construction Fifth Engineering Bureau, Changsha 410004, China.
Materials (Basel). 2025 Sep 19;18(18):4388. doi: 10.3390/ma18184388.
Existing studies on chloride ion transport in concrete under compressive load had rarely incorporated the influence of the dry-wet time ratio, even though this ratio was a key factor affecting chloride penetration in coastal concrete structures subjected to periodic drying-wetting cycles. This study was therefore motivated to fill this gap and to provide more reliable theoretical support for the durability assessment of such engineering structures. A series of accelerated chloride ion penetration experiments was conducted on concrete under compressive load with different dry-wet time ratios. The effects of the dry-wet time ratio, compressive stress level, and exposure environment on chloride ion transport in concrete were analyzed. A chloride ion diffusion coefficient model that accounted for both the dry-wet time ratio and the compressive stress level was then established and validated. The results showed that the enhancing effect of the dry-wet time ratio on chloride ion transport became significant under relatively high compressive stress. When the dry-wet time ratio was 7:1, the convection zone depths of concrete specimens under no stress and compressive stress were both 5 mm. Moreover, when the compressive stress level was 0.5 times the compressive strength and the dry-wet time ratio was 7:1, the chloride concentration of the specimens increased by an average of 756.4% compared with that under natural immersion.
现有关于混凝土在压缩荷载作用下氯离子传输的研究很少考虑干湿时间比的影响,尽管该比值是影响沿海地区经受周期性干湿循环的混凝土结构中氯离子渗透的关键因素。因此,本研究旨在填补这一空白,并为这类工程结构的耐久性评估提供更可靠的理论支持。对处于不同干湿时间比的压缩荷载作用下的混凝土进行了一系列加速氯离子渗透试验。分析了干湿时间比、压缩应力水平和暴露环境对混凝土中氯离子传输的影响。随后建立并验证了一个同时考虑干湿时间比和压缩应力水平的氯离子扩散系数模型。结果表明,在相对较高的压缩应力下,干湿时间比对氯离子传输的增强作用变得显著。当干湿时间比为7:1时,无应力和有压缩应力作用下混凝土试件的对流区深度均为5mm。此外,当压缩应力水平为抗压强度的0.5倍且干湿时间比为7:1时,试件的氯离子浓度相较于自然浸泡时平均增加了756.4%。