通过循环浸泡+红外烘干法研究 Q420qNH 板和焊接接头在除冰盐介质中的腐蚀行为

IF 1.1 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Corrosion Pub Date : 2024-05-16 DOI:10.5006/4513
Xiaoqian Liu, Tieming Guo, Wan Zhang, Weihong Wu, Xueli Nan, Yanwen Hu, Xiangbin Yi
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引用次数: 0

摘要

通过循环浸泡+红外干燥加速腐蚀实验研究了 Q420qNH 钢板及焊接接头在除冰盐介质中的腐蚀行为。结果表明,在浸泡腐蚀缺氧阶段,受 Cl- 浓度差腐蚀微电池影响,腐蚀产物主要为 Fe2O3 和 FeOCl;在红外干燥阶段,受氧浓度差腐蚀微电池催化,腐蚀产物主要为 β-FeOOH、γ-FeOOH 和 Fe3O4。在整个腐蚀过程中,焊接样品的腐蚀增重和平均腐蚀速率始终低于板材样品。焊接样品的 Iα-FeooH/Iβ-FeooH + FeOCl 峰强比始终高于板材样品和热影响区样品。三种试样的腐蚀类型均为不均匀全腐蚀+点蚀,且板材的点蚀深度远大于焊缝和热影响区的点蚀深度。在腐蚀后期,自腐蚀电流密度为:板材 > 热影响区 > 焊缝,焊缝和热影响区样品锈层的电阻分别是板材样品的 1.66 倍和 1.31 倍。这是因为焊缝和热影响区的微观结构是由原来奥氏体晶粒内部生成的大量细小针状铁素体和板状贝氏体组成,小角度晶界不利于点蚀的发生和扩展。此外,焊缝中较高含量的 Cu、Cr、Ni 等元素可细化锈层产物,有效阻碍 Cl- 的侵入,有助于提高耐腐蚀性能。由于 Cl- 和浸泡缺氧环境的共同作用,抑制了 α-FeOOH 的形成,促进了大量疏松、不稳定的 β-FeOOH 和可溶性 FeOCl 的形成,因此在除冰盐介质中循环浸泡腐蚀时,耐候钢不能得到很好的锈层保护。
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Corrosion behavior of Q420qNH plate and welded joint in deicing salt medium by cyclic immersion + infrared drying
The corrosion behavior of Q420qNH steel plate and welded joint in deicing salt medium is investigated by cyclic immersion + infrared drying accelerated corrosion experiments. The results show that the corrosion products are mainly Fe2O3 and FeOCl under the influence of Cl- concentration differential corrosion microcells in the immersion corrosion anoxic stage, and the corrosion products are mainly β-FeOOH, γ-FeOOH, and Fe3O4 under the influence of oxygen concentration differential corrosion microcells catalyzed in the infrared drying stage. Throughout the corrosion process, the corrosion weight gain and average corrosion rate of the welded sample is always lower than that of the plate sample. The Iα-FeooH/Iβ-FeooH + FeOCl peak intensity ratio of the welded sample is always higher than that of the plate sample and the heat- affected zone sample. The corrosion types of the three samples are inhomogeneous total corrosion + pitting, and the depth of the pits in the plate is much larger than that in the weld and the heat-affected zone. In the late stage of corrosion, the self-corrosion current density is: plate > heat-affected zone > weld, and the resistance of the rust layer of the weld and heat-affected zone samples is 1.66 times and 1.31 times of that of the plate sample, respectively. This is because the microstructure of the weld and heat-affected zone are composed of a large number of fine acicular ferrite and lath-shaped bainite generated inside the original austenite grains, and the small angle grain boundary is not conducive to the initiation and expansion of pitting corrosion. In addition, the higher content of Cu, Cr, Ni and other elements in the weld can refine the rust layer products and effectively impede the intrusion of Cl-, contributing to the improvement of corrosion resistance. As the combined effect of Cl- and immersion anoxic environment inhibits the formation of α-FeOOH and promotes the formation of the large number of loose and unstable β-FeOOH and soluble FeOCl, the weathering steel is not well protected by the rust layer during cyclic immersion corrosion in deicing salt medium.
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来源期刊
Corrosion
Corrosion MATERIALS SCIENCE, MULTIDISCIPLINARY-METALLURGY & METALLURGICAL ENGINEERING
CiteScore
2.80
自引率
12.50%
发文量
97
审稿时长
3 months
期刊介绍: CORROSION is the premier research journal featuring peer-reviewed technical articles from the world’s top researchers and provides a permanent record of progress in the science and technology of corrosion prevention and control. The scope of the journal includes the latest developments in areas of corrosion metallurgy, mechanisms, predictors, cracking (sulfide stress, stress corrosion, hydrogen-induced), passivation, and CO2 corrosion. 70+ years and over 7,100 peer-reviewed articles with advances in corrosion science and engineering have been published in CORROSION. The journal publishes seven article types – original articles, invited critical reviews, technical notes, corrosion communications fast-tracked for rapid publication, special research topic issues, research letters of yearly annual conference student poster sessions, and scientific investigations of field corrosion processes. CORROSION, the Journal of Science and Engineering, serves as an important communication platform for academics, researchers, technical libraries, and universities. Articles considered for CORROSION should have significant permanent value and should accomplish at least one of the following objectives: • Contribute awareness of corrosion phenomena, • Advance understanding of fundamental process, and/or • Further the knowledge of techniques and practices used to reduce corrosion.
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