航空学报 > 2008, Vol. 30 Issue (6): 1490-1496

金属表面腐蚀损伤演化过程的元胞自动机模拟

王慧1,吕国志1,王乐1,张有宏2   

  1. 1.西北工业大学 航空学院 2.第二炮兵工程学院
  • 收稿日期:2007-09-11 修回日期:2008-02-22 出版日期:2008-11-25 发布日期:2008-11-25
  • 通讯作者: 吕国志

Cellular Automaton Simulations of Surface Corrosion Damage Evolution

Wang Hui1,Lu Guozhi1,Wang Le1,Zhang Youhong2   

  1. 1.School of Aeronautics, Northwestern Polytechnical University 2.The Second Artillery Engineering College
  • Received:2007-09-11 Revised:2008-02-22 Online:2008-11-25 Published:2008-11-25
  • Contact: Lu Guozhi

摘要: 用一个简单的元胞自动机从介观的角度对腐蚀环境中金属表面的腐蚀损伤演化过程进行研究。假定腐蚀体系为扩散过程控制的金属腐蚀体系,定义了简单的局部规则反映腐蚀现象中的基本化学物理过程,例如质量转移、金属溶解和钝化过程等。对于单个蚀坑,得到了蚀坑等效半径随模拟时间的变化曲线;对于多个蚀坑,认为蚀坑的成核时间服从威布尔分布,通过对该分布函数进行随机抽样,使得在不同时刻金属表面会随机产生大量的蚀坑,对金属表面的腐蚀损伤情况进行模拟,得到了表面腐蚀损伤度随模拟时间的变化规律。结果表明元胞自动机法可以用于腐蚀损伤演化过程的模拟,这对于更好地进行腐蚀损伤的量化及结构完整性的评估有着重要的实际意义。

关键词: 元胞自动机法, 等效半径, 表面腐蚀损伤度, 随机抽样, 模拟

Abstract: The evolution of the corrosion damage on the surface of a metal in an aggressive environment is investigated in this article with a simple cellular automaton (CA) model defined at a mesoscopic scale. A diffusion control of the electrolyte species is assumed, and for such elementary physicochemical processes as mass transport, metal dissolution and passivation, simple interaction rules between the cells of the CA are defined. For a single pit, the curves of the equivalent radius via simulation time are obtained, while for multi-pits, the induction time for pit initiation is simulated as Weibull distribution, and the corrosion pits can be created on the metal surface stochastically by using random sampling to produce a number of initiation time samples. The corrosion damage on the surface can be simulated and the law of the surface corrosion damage ratio vs simulation time is investigated. The results show that CA is a feasible approach to model corrosion damage growth, which could be of practical importance in quantifying corrosion damage and predicting structural integrity.

Key words: cellular automaton, equivalent radius, surface corrosion damage ratio, random sampling, simulation

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