用于现场成像 Q235 碳钢焊接接头腐蚀情况的灵活参考阵列电极技术

Juan Zuo, Lu Ma, Ajiao Chen, Liwen Lin, Changjian Lin, Houan Zhang
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引用次数: 0

摘要

在许多工业领域,焊缝局部腐蚀一直是一个非常常见和棘手的问题。为了应对实时监测焊接区腐蚀行为的挑战,我们开发了一种新型的银/氯化银柔性阵列,采用 4×8 的电极配置。该阵列用于原位监测浸入 0.01 mol/L NaCl 溶液(pH 值为 9)中的 Q235 钢焊接接头(包括单对接焊缝、双对接焊缝和角焊缝)的腐蚀过程。在最初的 15 分钟内,焊接区显示出较高的腐蚀活性,所有三个焊点都出现了点状腐蚀。事实证明,柔性参比阵列电极是现场监测碳钢腐蚀的有力工具,它能全面描述钢材随时间变化的腐蚀状态。事实证明,柔性参比阵列电极是原位监测碳钢腐蚀的强大工具,它能全面描述钢材随时间变化的腐蚀状态。这种洞察力对于准确预测腐蚀和评估钢结构的使用寿命至关重要。
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A Flexible Reference Array Electrode Technique for In Situ Imaging the Corrosion of Q235 Carbon Steel Welded Joints
Localized corrosion in welds has always been a very common and difficult problem in many industrial fields. Preferential corrosion usually occurs in the weld zones with irregular shapes of metal welds due to the welding process. To address the challenge of monitoring corrosion behavior at the weld zone in real-time, a novel Ag/AgCl flexible array, arranged in a 4×8 electrode configuration, has been developed. This array is employed for in situ monitoring of the corrosion process in Q235 steel welded joints (including single butt welds, double butt welds, and fillet welds) immersed in a 0.01 mol/L NaCl solution with a pH of 9. The measurement is conducted using a custom-made array electrode signal test system. The results demonstrate that the prepared electrode exhibits a highly responsive behavior to chlorine ions from 0.001 to 0.1 mol/L concentration and maintains excellent stability during 4000s. The weld zone shows higher corrosion activity and trends to generate pitting corrosion for all three welded joints in the first 15 min. With the increase of time, micro pitting corrosion dissolves and expands to macro point corrosion in the next 30 min. The flexible reference array electrode proves to be a powerful tool for the in situ monitoring of carbon steel corrosion, offering a comprehensive depiction of the steel's corrosion status over time. Such insights are crucial for making accurate corrosion predictions and conducting service life evaluations of steel structures.
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来源期刊
Current Materials Science
Current Materials Science Materials Science-Materials Science (all)
CiteScore
0.80
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0.00%
发文量
38
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