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作 者:彭一展 弓扶元 赵羽习[1] PENG Yizhan;GONG Fuyuan;ZHAO Yuxi(College of Civil Engineering and Architecture,Zhejiang University,Hangzhou 310012,China)
出 处:《中国腐蚀与防护学报》2022年第5期813-818,共6页Journal of Chinese Society For Corrosion and Protection
基 金:国家自然科学基金(51978604,52038010,51820105012和52008367)。
摘 要:为了研究杂散电流作用下混凝土等导电基体中钢筋腐蚀的宏观分布规律,开展了三维电场的有限元模拟和基于仿混凝土材料的钢筋腐蚀实验。建立三根钢筋嵌入矩形基体的有限元模型来开展数值模拟研究,讨论钢筋的锈蚀状态和基体的杂散电流电场,并进行参数分析。然后使用与数值模型相同尺寸的试件来开展腐蚀实验,将得到的钢筋腐蚀速率与模拟结果进行了对比。结果表明,应用界面极化反应与外加Maxwell宏观电场相结合的方法,可以实现杂散电流作用下钢筋腐蚀速率与基体电场的有限元模拟。此外,通过对透明基体试件的观察和三维激光扫描,可以定性和定量地评估腐蚀量的分布。The stray current induced corrosion is a common form of corrosion that occurs in the concrete structures of electrified traction systems,which becomes more and more serious with the increasing service life.Hence,in order to clarify the spatial distribution of reinforcement corrosion in the conductive matrix like concrete in the presence of stray current,the corrosion features of reinforcement in a transparent imitated concrete was assessed experimentally,meanwhile the finite element simulation of the applied electric field was also carried out.A finite element model of three steel bars embedded in a rectangular matrix was established to carry out numerical simulation studies,the corrosion state of the steel bars and the stray current electric field of the matrix were discussed in terms of the relevant parameters.Meanwhile,the corrosion experiment of the test piece with the same size as the numerical model was carried out,and the obtained corrosion rate of the steel bars was compared with the simulation result.The results show that the corrosion rate of reinforcements and the electric field distribution in the matrix in the presence of stray current can be simulated by taking the polarization reaction with Maxwell electric field into account.In addition,the distribution of corrosion amount can be evaluated qualitatively and quantitatively by optical observation and the 3D laser scanning of the test piece with transparent matrix.
关 键 词:杂散电流 数值模拟 仿混凝土 腐蚀分布 基体电场
分 类 号:TG172.9[金属学及工艺—金属表面处理]
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