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An Overview of Corrosion and Experimental Studies on Corroded Mild Steel Compression Members

机译:腐蚀低碳钢受压构件的腐蚀概述和实验研究

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The performance of steel structures are strongly influenced by the damage due to corrosion, whose control is a key aspect for design and maintenance of both new and existing important structures. This paper presents various issues related to corrosion, types of corrosion, chemical reactions and electrochemistry behind corrosion of steel structural elements, approaches to quantify corrosion and experimental studies on corroded coupons and compression members made of angle and tubular sections. The various corrosion models for structural applications are also presented, by considering the depth of corrosion along with various influencing parameters. Based on experimental studies on coupons, it is concluded that corrosion results in reduction in metal thickness followed by weight loss and reduction in mechanical strength. Galvanostatic method is adopted to corrode structural steel specimens by keeping current as constant. The thickness loss and weight loss are the main parameters measured to quantify the amount of corrosion. From the studies, it is concluded that for the corroded specimens, along with reduction in thickness, the geometric properties such as area, moment of inertia, radius of gyration, section modulus changes. As the corroded surface is highly irregular these changes may not be linear. Variation in slenderness ratio also noticed for corroded specimens. In effect the overall capacity of the section reduces due to corrosion. Identifying the intensity level of corrosion such as mild, moderate and severe along with the form and location of corrosion are the other parameters discussed. A drastic reduction in mechanical properties i.e., yield and ultimate strength are observed for severely corroded specimens.
机译:钢结构的性能受到腐蚀所致破坏的强烈影响,腐蚀的控制是设计和维护新的和现有的重要结构的关键方面。本文介绍了与腐蚀,腐蚀类型,钢结构元件腐蚀背后的化学反应和电化学有关的各种问题,量化腐蚀的方法以及对由角钢和管状截面制成的腐蚀试样和压缩构件的实验研究。通过考虑腐蚀深度以及各种影响参数,还提出了用于结构应用的各种腐蚀模型。基于对试样的实验研究,得出的结论是,腐蚀导致金属厚度减小,然后重量减小,机械强度降低。采用恒电流法通过保持电流恒定来腐蚀结构钢试样。厚度损失和重量损失是用来量化腐蚀量的主要参数。从研究中得出的结论是,对于腐蚀的试样,随着厚度的减小,诸如面积,惯性矩,回转半径,截面模量等几何特性会发生变化。由于腐蚀表面高度不规则,因此这些变化可能不是线性的。腐蚀试样的细长比也有所变化。实际上,该部分的总容量由于腐蚀而降低。确定腐蚀强度等级(例如轻度,中度和重度)以及腐蚀的形式和位置是讨论的其他参数。对于严重腐蚀的样品,观察到机械性能,即屈服强度和极限强度的急剧降低。

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