环氧碳涂层铝腐蚀监测声发射可行性研究

D. Baltzis, O. Evaggelou, A. Lekatou, A. Paipetis
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引用次数: 1

摘要

在本研究中,为了监测腐蚀现象,将循环极化试验与声发射测量相结合。以往的研究表明,环氧复合涂层对铝基材具有良好的防腐效果,减少甚至消除了一些降解现象。为了将氧化层发育和局部腐蚀等腐蚀现象与特征声发射信号描述子联系起来,本文将声发射应用于接收、阳极氧化和环氧碳涂层铝基板的动电位循环极化测试中。环氧涂层既可以作为接收材料,也可以用各种碳填料(如碳纳米管、无定形石墨或它们的组合)增强。声发射检测了阴极极化过程中氢气泡相关过程产生的信号和阳极极化最后阶段厚溶膜沉积产生的信号。涂覆和未涂覆铝基板之间的声学分布随表面处理和增强填料的使用而发生实质性变化。实验结果表明,声发射可以作为铝腐蚀监测的一种手段。碳环氧涂层铝腐蚀监测声发射可行性研究发表历史:收稿日期:2018.06.01接收日期:2018.06.28发布日期:2018.06.30
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Acoustic Emission Feasibility Study for Carbon Epoxy Coated Aluminum Corrosion Monitoring
In the presented research effort, cyclic polarization tests were conducted coupled with acoustic emission measurements, in order to monitor the corrosion phenomena. Previous studies have shown that epoxy composite coatings offer satisfactory corrosion protection to aluminum substrates minimizing and even eliminating some degradation phenomena. In the present effort, acoustic emission was applied during potentiodynamic cyclic polarization testing on as received, anodized and carbon epoxy coated aluminum substrates in order to correlate corrosion phenomena, like oxide layer development and localized corrosion, with characteristic acoustic emission signal descriptors. The epoxy coating was used both as received and as reinforced with various carbon fillers i.e. carbon nano-tubes, amorphous graphite or a combination of them. Acoustic emission detected signals due to hydrogen bubble related processes during cathodic polarization and signals due to deposition of thick soluble films during the final stage of anodic polarization. The acoustic profile between coated and uncoated aluminum substrates, exhibited substantial changes dependent both on the surface preparation and the employed reinforcing filler. The overall outcome of the experimental results, indicate that with further research, acoustic emission can be employed as an Aluminum Corrosion Monitoring tool. Acoustic Emission Feasibility Study for Carbon Epoxy Coated Aluminum Corrosion Monitoring Publication History: Received: June 01, 2018 Accepted: June 28, 2018 Published: June 30, 2018
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