...
首页> 外文期刊>Corrosion Reviews >Atmospheric corrosion modeling
【24h】

Atmospheric corrosion modeling

机译:大气腐蚀建模

获取原文
获取原文并翻译 | 示例
           

摘要

A better understanding of corrosion processes during the last years is leading to an increased demand for numerical corrosion models. Corrosion models become increasingly relevant toward simulations, lifetime predictions, and the optimization of corrosion prevention. Also, the improvements in computational power and capacity give rise to an increased number of research projects in this field. Totally different modeling approaches are applied to a wide range of different corrosion processes. This leads to a dispersion of information in the literature. The aim of this paper is to give an overview of the present approaches in atmospheric corrosion modeling. In the past, atmospheric corrosion has been modeled based on empirical, historical data. These models provide fitted functions of the corrosion rate or damage as a function of time for different environmental parameters. These methods give no or little information about the underlying physicochemi-cal phenomena that determine the corrosion processes. During the last decade, more and more work has been done on causal approaches. Therefore, the focus will be on these recent advances in atmospheric corrosion modeling. The links will be made to the microscopic models of isolated corrosion phenomena. The examples are crevice corrosion, corrosion under porous layers, and the modeling of local electrochemical methods. Also, some more general, macroscopic approaches will be discussed. These macroscopic approaches will be compared to each other and positioned into the scope of multiscale modeling. The first goal of atmospheric corrosion modeling is to provide tools in the understanding and quantification of the processes under the influence of external atmospheric conditions. These models could reduce the current corrosion assessment methods that essentially rely on empirical models. On a longer term, modeling would aid in optimizing the material selection, structural design, and maintenance management.
机译:近年来对腐蚀过程的更好理解导致对数字腐蚀模型的需求增加。腐蚀模型与仿真,寿命预测以及腐蚀预防的优化越来越相关。而且,计算能力和容量的提高引起了该领域中越来越多的研究项目。完全不同的建模方法适用于各种不同的腐蚀过程。这导致了文献中信息的分散。本文的目的是概述大气腐蚀建模中的当前方法。过去,大气腐蚀是根据经验和历史数据进行建模的。这些模型针对不同的环境参数提供了随时间变化的腐蚀速率或破坏的拟合函数。这些方法几乎不提供有关决定腐蚀过程的潜在物理化学现象的信息。在过去的十年中,因果方法越来越多。因此,重点将放在大气腐蚀建模的这些最新进展上。链接将建立到隔离腐蚀现象的微观模型。例如缝隙腐蚀,多孔层下的腐蚀和局部电化学方法的建模。同样,将讨论一些更通用的宏观方法。这些宏观方法将相互比较,并置于多尺度建模的范围内。大气腐蚀建模的首要目标是提供在外界大气条件影响下理解和量化过程的工具。这些模型可以减少目前基本上依赖于经验模型的腐蚀评估方法。从长远来看,建模将有助于优化材料选择,结构设计和维护管理。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号