Jiang Haosen, Jin Zuquan, Zhang Xiaoying, Qian Lixing, Zhou Zhaoliang
College of Civil Engineering, Qingdao University of Technology, Qingdao 266520, China.
Engineering Research Center of Concrete Technology under Marine Environment, Ministry of Education, Qingdao 266520, China.
Materials (Basel). 2023 Jan 7;16(2):588. doi: 10.3390/ma16020588.
Concrete, especially mass concrete, releases a large amount of heat during the hydration process, resulting in the passivation of reinforcement at high temperatures. However, the passivation study of reinforced concrete is mostly conducted at room temperature, and the influence of temperature on passive film behavior is not clear at present. The passivation film of reinforcing steel directly determines the corrosion resistance of reinforcing steel and affects the service life of reinforced concrete. Herein, the passivation of Q235 steel soaking in simulated concrete pore (SCP) solution at 20 °C, 40 °C, and 60 °C is explored. It is found that the passivation process is divided into two stages, with 24 h as the boundary; within 24 h the passivation was carried out rapidly, and the passive film is in a relatively stable state after 24 h. In addition, the higher the temperature, the faster the passivation. Moreover, under the condition of higher temperatures, more Fe compounds are produced, and the semiconductor properties of passivated films are more stable. Based on experiments, the passivation mechanism affected by temperature was analyzed in detail.
混凝土,尤其是大体积混凝土,在水化过程中会释放大量热量,导致钢筋在高温下发生钝化。然而,钢筋混凝土的钝化研究大多在室温下进行,目前温度对钝化膜行为的影响尚不清楚。钢筋的钝化膜直接决定了钢筋的耐腐蚀性,并影响钢筋混凝土的使用寿命。在此,研究了Q235钢在20℃、40℃和60℃的模拟混凝土孔隙(SCP)溶液中浸泡时的钝化情况。发现钝化过程分为两个阶段,以24小时为界;24小时内钝化迅速进行,24小时后钝化膜处于相对稳定状态。此外,温度越高,钝化越快。而且,在较高温度条件下,会生成更多的铁化合物,钝化膜的半导体性能更稳定。基于实验,详细分析了温度影响下的钝化机理。