Heng Li,Yan He,Xinyu Yang,Dewen Zhou,Xiaowei Wang,Jianqun Tang,Jianming Gong
出处
期刊:Renewable Energy [Elsevier] 日期:2024-05-20卷期号:229: 120685-120685被引量:1
标识
DOI:10.1016/j.renene.2024.120685
摘要
The corrosion kinetic models coupling with the effect of chloride impurity and plastic deformation were proposed. Molten salt corrosion (MSC) damage was quantitatively described using the corrosion kinetic and the distance of materials point from corrosion surface. Employing the elastic-viscoplastic theory with a hyperbolic-sine flow rule and the proposed damage model, a corrosion cracking mechanism-based model was developed and implemented using finite element analysis. The corrosion-assisted cracking ahead of crack tips in accordance with the corrosion cracking mechanism was simulated. Furthermore, the predicted corrosion depth, corrosion morphologies, and multi-site corrosion cracking behaviors were in good agreement with the experimental results.