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首页> 外文期刊>Advanced Science Letters >Three Dimensional Cellular Automaton for Simulation of the Multi-Pit Corrosion Damage Evolution
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Three Dimensional Cellular Automaton for Simulation of the Multi-Pit Corrosion Damage Evolution

机译:三维细胞自动机,模拟多点腐蚀损伤的演变

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摘要

A three-dimensional Cellular Automaton (CA) model is proposed to simulate the evolution of multi-pit corrosion damage on a metal exposed to an aggressive environment. In this model, some simple local rules between the cells of the CA are defined to describe the main elementary physicochemical processes: mass transport, IR drop, metal dissolution and passivation. The proposed model takes into account both pit initiation and growth processes. The pitting corrosion damage at different aggressive environment is obtained by performing the simulation using different simulation parameters. The surface corrosion damage ratio and the maximal depth of corrosion pits are chosen as the corrosion characteristic quantities, and the law of these corrosion characteristic quantities with respect to simulation steps is investigated. The results show that CA can be applied to model the evolution of corrosion damage on a three-dimensional lattice, and prediction of corrosion damage based on the local rules of CA would be of practical importance for the structural integrity evaluation.
机译:提出了三维元胞自动机(CA)模型来模拟暴露在侵蚀性环境下的金属上的多点腐蚀损伤的演变。在该模型中,定义了CA细胞之间的一些简单局部规则,以描述主要的基本物理化学过程:传质,IR下降,金属溶解和钝化。所提出的模型考虑了坑的萌生和生长过程。通过使用不同的仿真参数执行仿真,可以获得在不同侵蚀环境下的点蚀腐蚀损伤。选择表面腐蚀损伤率和腐蚀坑的最大深度作为腐蚀特征量,研究了这些腐蚀特征量相对于模拟步骤的规律。结果表明,CA可以应用于三维晶格腐蚀损伤演化的建模,基于CA局部规则的腐蚀损伤预测对于结构完整性评价具有重要的现实意义。

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