A review study on Corrosion Fatigue and its related testing methodologies

Q3 Engineering
F. Abbasi
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引用次数: 2

Abstract

Corrosion Fatigue is the mechanical degradation of a material under the joint action of damage mechanisms corrosion and fatigue. Corrosive nature of the seawater puts severe durability requirements on materials of which are often exposed to corrosion fatigue and abrasive conditions simultaneously. Therefore, identification of the combined effects of both corrosion and fatigue damage mechanisms is necessary to improve predictive models for the corrosion fatigue phenomenon. Present article is the result of a desktop study (scientific literature and standards) with the aim of study the feasibility of designing and manufacturing of a corrosion fatigue testing set-up that would allow the designer to compare the performance of different materials exposed to corrosion fatigue, permitting also the comparison with results from dry fatigue testing. The corrosion fatigue mechanism is described in more detail and a short presentation of some typical lab-scale corrosion fatigue test setups is given. This is followed by illustration of international standards and guidelines which will be used to design a new corrosion fatigue test set-up for evaluating the fatigue behavior of material in seawater environment. Finally the experimental techniques for corrosion fatigue crack detection and propagation along with the fundamental basic of corrosion fatigue modeling are illustrated.
腐蚀疲劳及其测试方法的研究进展
腐蚀疲劳是材料在腐蚀和疲劳损伤机制共同作用下的力学退化。海水的腐蚀性对材料的耐久性提出了苛刻的要求,这些材料经常同时暴露在腐蚀疲劳和磨蚀条件下。因此,识别腐蚀和疲劳损伤机制的联合作用对于改进腐蚀疲劳现象的预测模型是必要的。本文是一项桌面研究(科学文献和标准)的结果,目的是研究设计和制造腐蚀疲劳试验装置的可行性,该装置将允许设计师比较不同材料暴露在腐蚀疲劳下的性能,也允许与干疲劳试验的结果进行比较。更详细地描述了腐蚀疲劳机理,并简要介绍了一些典型的实验室腐蚀疲劳试验装置。接下来是国际标准和指南的说明,这些标准和指南将用于设计新的腐蚀疲劳试验装置,以评估材料在海水环境中的疲劳行为。最后阐述了腐蚀疲劳裂纹检测和扩展的实验技术以及腐蚀疲劳建模的基本原理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
自引率
0.00%
发文量
0
审稿时长
9 weeks
期刊介绍: The scopes of the journal include, but are not limited to, the following topics: • Thermal Engineering and Fluids Engineering • Mechanics • Kinematics, Dynamics, & Control of Mechanical Systems • Mechatronics, Robotics and Automation • Design, Manufacturing, & Product Development • Human and Machine Haptics Specific topics of interest include: Advanced Manufacturing Technology, Analysis and Decision of Industry & Manufacturing System, Applied Mechanics, Biomechanics, CAD/CAM Integration Technology, Complex Curve Design, Manufacturing & Application, Computational Mechanics, Computer-aided Geometric Design & Simulation, Fluid Dynamics, Fluid Mechanics, General mechanics, Geomechanics, Industrial Application of CAD, Machinery and Machine Design, Machine Vision and Learning, Material Science and Processing, Mechanical Power Engineering, Mechatronics and Robotics, Artificial Intelligence, PC Guided Design and Manufacture, Precision Manufacturing & Measurement, Precision Mechanics, Production Technology, Quality & Reliability Engineering, Renewable Energy Technologies, Science and Engineering Computing, Solid Mechanics, Structural Dynamics, System Dynamics and Simulation, Systems Science and Systems Engineering, Vehicle Dynamic Performance Simulation, Virtual-tech Based System & Process-simulation, etc.
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