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首页> 外文期刊>Computational Materials Science >Effect of crystallographic texture and microstructure on pitting corrosion behavior of low carbon steels: A Monte Carlo model
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Effect of crystallographic texture and microstructure on pitting corrosion behavior of low carbon steels: A Monte Carlo model

机译:晶体纹理与微观结构对低碳钢蚀腐蚀行为的影响:蒙特卡罗模型

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摘要

This work presents a model capable of describing the influence of the crystallographic texture and microstructure produced by Voronoi tessellation on the initial stage of pitting corrosion in API 5L steels. The proposed model takes into account several physical parameters of the material such as crystallographic orientation, gran size, grain boundary, number of inclusions, surface energy, and the Gibbs free energy change. The number of corrosion pits and their distribution associated with the initiation of pitting corrosion were determined using both Monte Carlo simulation and corrosion test. The good agreement between simulation results and the experimental observations verified the validity of the proposed model. The results showed that the pits initiation depends strongly on the change of surface energy due to the formation of new phases and the character of grain boundary and its distribution. The behaviour of nucleated pits is completely random, while their subsequent growth from a nucleation site has a strong influence from the crystallographic grains orientation.
机译:该工作介绍了一种模型,其能够描述Voronoi Telselation在API 5L钢中点腐蚀的初始阶段产生的晶体纹理和微观结构的影响。所提出的模型考虑了诸如晶体取向,Gran尺寸,晶界,夹杂物,表面能和Gibbs自由能变化的若干物理参数。使用蒙特卡罗模拟和腐蚀试验确定与蚀腐蚀启动相关的腐蚀凹坑的数量及其分布。仿真结果与实验观察之间的良好一致性验证了所提出的模型的有效性。结果表明,由于新阶段的形成和晶界特征及其分布,凹坑启动依赖于表面能的变化。成核凹坑的行为是完全随机的,而其随后从成核位点的生长具有强烈的晶粒取向影响。

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