Jian Yinghua, Liu Dunwen, Cao Kunpeng, Tang Yu
School of Resources and Safety Engineering, Central South University, Changsha 410083, China.
Materials (Basel). 2023 Mar 27;16(7):2658. doi: 10.3390/ma16072658.
The corrosion of concrete in sulfate environments is a difficult problem in the durability of civil engineering structures. To investigate the variability of deterioration damage to concrete structures by sulfate erosion under non-destructive testing and quantify the protective effect of silane coatings on concrete under the action of sulfate erosion, an accelerated erosion experiment was carried out using field sampling in a tunnel project under a sulfate erosion environment. By means of ultrasonic velocity measurement and CT scanning, the samples protected by a silane coating under the sulfate attack environment were compared with those not protected. The deterioration characteristics of concrete under the sulfate attack environment and the protective effect of silane coating on the concrete structure were analyzed. In addition, a method for evaluating the sulfate damage to concrete based on CT images and ultrasonic velocity analysis was proposed. The results show that the samples prepared in the field show a significant difference in ultrasonic velocity in the process of erosion and deterioration according to the material difference at the measuring point interface. Through the overall damage evaluation analysis of the sample, it is concluded that the damage degree of the protected group sample is light and the heterogeneity is weak, whereas the local damage to the exposed group is serious. Combined with the CT image analysis of concrete before and after loading, the distribution characteristics of the damaged area divided by the concrete sulfate damage evaluation method proposed in this paper are highly similar to the real situation. The results of the study can provide a reference for similar projects for the detection, analysis, protection and evaluation of sulfate-attacked concrete.
在硫酸盐环境中混凝土的腐蚀是土木工程结构耐久性方面的一个难题。为了研究在无损检测下硫酸盐侵蚀对混凝土结构劣化损伤的变异性,并量化硅烷涂层在硫酸盐侵蚀作用下对混凝土的防护效果,在一个处于硫酸盐侵蚀环境的隧道工程中进行了现场取样的加速侵蚀试验。通过超声声速测量和CT扫描,将在硫酸盐侵蚀环境下受硅烷涂层保护的样品与未受保护样品进行了对比。分析了硫酸盐侵蚀环境下混凝土的劣化特征以及硅烷涂层对混凝土结构的防护效果。此外,还提出了一种基于CT图像和超声声速分析评估混凝土硫酸盐损伤的方法。结果表明,现场制备的样品在侵蚀劣化过程中,根据测量点界面处的材料差异,超声声速存在显著差异。通过对样品的整体损伤评估分析得出,受保护组样品损伤程度较轻且不均匀性较弱,而暴露组局部损伤严重。结合加载前后混凝土的CT图像分析,本文提出的混凝土硫酸盐损伤评估方法划分出的损伤区域分布特征与实际情况高度相似。研究结果可为类似工程中遭受硫酸盐侵蚀混凝土的检测、分析、防护及评估提供参考。