用快速电化学无损分析方法测定电镀金属的耐蚀性

Walter Giurlani, Patrick Marcantelli, Francesco Benelli, Daniele Bottacci, F. Gambinossi, M. Passaponti, Emanuele Salvietti, A. Luca, M. Innocenti
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引用次数: 0

摘要

腐蚀试验是金属工业生产过程质量控制的重要环节。特别是电镀商品,耐蚀性是表面质量的主要指标。国际标准组织已经建立了几个使用电化学阻抗谱(EIS)的标准,单独或与其他电化学技术相结合,以确定金属表面的耐腐蚀性,例如ISO 16773用于测试涂层和未涂层的金属样品,ISO 17463专门设计用于有机涂层金属表面。EIS是一种用于加速评价涂层防腐性能的通用程序:与其他标准程序不同,它通常是一种非破坏性方法。EIS的工作原理是施加固定频率的电正弦扰动并测量样品的电阻抗Z。测量不同频率的阻抗并分析数据,可以假设等效电路的结构并提取耐腐蚀数据。这种方法通常用于高阻抗涂层,在本研究中,我们将探索EIS以及OCP测量,腐蚀电流和其他技术,以找到低阻抗金属涂层分析的最佳选择。本研究的目的是开发一种方法来确定电镀产品的耐腐蚀性,该方法可以提供与其他更广泛和传统的破坏性腐蚀测试技术(如ISO 9227和ISO 17228人工大气腐蚀测试)一样可靠的结果,采用非破坏性过程,并且在相当少的时间内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Corrosion Resistance Test of Electroplated Metals using Fast Electrochemical Non-Destructive Analysis
Corrosion testing is a very important step in quality control for metal industrial processes. Especially for electroplated goods, corrosion resistance is a primary indicator of surface quality. International Standard Organization has established several standards that use Electrochemical Impedance Spectroscopy (EIS), alone or combined with other electrochemical techniques, to determine corrosion resistance of metal surfaces such ISO 16773 for testing coated and uncoated metallic specimens and ISO 17463 specially designed for organic-coated metal surfaces. EIS is a versatile procedure for the accelerated evaluation of the anti-corrosion performance of coatings: unlike other standard procedures is generally a non-destructive method. EIS works applying an electrical sinusoidal perturbation with a fixed frequency and measuring electrical impedance Z of the sample. Measuring impedance at different frequencies and analysing the data it is possible to postulate the structure of an equivalent circuit and extract corrosion resistance data. This approach is commonly used for high-impedance coatings, in this study we will explore EIS as well as the OCP measurement, the corrosion current and other techniques to find the best option for low-impedance metallic coatings analysis. The objective of this study is to develop a method to determine corrosion resistance for electroplated goods that can give results as reliable as other more diffuse and traditional destructive corrosion testing techniques (such as corrosion tests in artificial atmosphere ISO 9227 and ISO 17228) with a non-destructive process and in a fair less amount of time.
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