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Electrochemical Noise Monitoring of the Cathodic Protection of Mg-Rich Primers

机译:富镁底漆阴极保护的电化学噪声监测

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摘要

Mg-rich primers provide cathodic protection of aluminum substrates similar to that provided by Zn-rich primers for steel substrates. This protection is due to the mixed potential that develops between the more active Mg particles in the binder and the aluminum substrate. Monitoring the open-circuit potential provides a measure of the cathodic protection of the primer with values changing from a mixed potential value of -1.2 V vs. saturated calomel electrode (SCE) to values consistent with the bare aluminum substrate. The application of the electrochemical noise method is presented for monitoring the performance of a Mg-rich primer beneath a topcoat. Embedded electrodes located between the topcoat and primer were used to perform measurements in a reverse configuration for electrodes on separate panels and electrodes on the same panel under immersion. The open-circuit potential was measured to track the cathodic protection behavior of the Mg-rich primer. Analysis of the measured current and potential noises and the calculated noise resistance, localized index, and associated parameters is presented. The influence of a scribe introduced to the panels on the noise measurement is demonstrated. The analysis was used to address the feasibility of noise measurement for in situ monitoring of the cathodic protection provided by the Mg-rich primer. [PUBLICATION ABSTRACT]
机译:富镁底漆为铝基材提供阴极保护,类似于富锌底漆为钢基材提供的保护。这种保护是由于在粘合剂中活性更高的Mg颗粒和铝基材之间产生了混合电势。监视开路电势可测量底漆的阴极保护,其值从-1.2 V对饱和甘汞电极(SCE)的混合电势值变化到与裸铝基板一致的值。介绍了电化学噪声方法的应用,以监测面漆下方富镁底漆的性能。使用位于面漆和底漆之间的嵌入式电极以相反的配置对浸没在单独面板上的电极和同一面板上的电极进行测量。测量开路电势以追踪富Mg底漆的阴极保护行为。介绍了对测得的电流和潜在噪声以及计算出的抗噪声性,局部指数和相关参数的分析。演示了引入面板的划线对噪声测量的影响。该分析用于解决噪声测量在现场监测富Mg底漆提供的阴极保护的可行性。 [出版物摘要]

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    《Corrosion》 |2010年第8期|p.1-12|共12页
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    K.N. Allanar*' * Q. Su, * and G. P. Bierwagen*Submitted for publication November 6, 2009, in revised form, March 22, 2010. Presented as paper no. 8164 at Department of Defense Corrosion Conference 2009, August 2009. Washington, DC.[double dagger] Corresponding author. E-mail: kerryallahar@boisestate.edu.* Department of Coatings and Polymeric Materials. North Dakota State University, Fargo. ND 58105.,;

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