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Opto-electrochemical Instruments; Detection of Crevise Corrosion

机译:光电化学仪器; 检测遮蔽腐蚀

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Background: Two techniques of laser optical interferometry have been reviewed for detection of crevice corrosion of low carbon steel samples in aqueous solutions. The first technique used an optical corrosion-meter to detect localized corrosion such as crevice corrosion, of the low carbon steel samples in seawater. The concept of the optical corrosion-meter was based on incorporating holographic interferometry and the cyclic polarization test. The second technique used a modified electrochemical noise technique based on holographic interferometry to detect crevice corrosion of the low carbon steel samples in 1 M of sodium hydroxide (NaOH) solution. Objective: Emphasis on the significant role of the optical techniques of detecting crevice corrosion of carbon steel in aqueous solutions alongside to the DC methods. Method: The optical corrosion-meter and the modified electrochemical noise technique were used in the present investigation. Results: Observations of crevice corrosion of the carbon steel samples in seawater by the optical corrosion-meter were found to be in agreement with the cyclic polarization test. In addition, the modified electrochemical noise technique was found to be very useful for quantitatively distinguishing of localized corrosion, passivation, and uniform corrosion of the carbon steel samples in 1 M NaOH solution. Conclusions: The optical techniques of detecting crevice corrosion of carbon steel in aqueous solutions were found efficient opto-electrochemical instruments for substantiating results of those DC methods.
机译:背景:已经综述了两种激光光学干涉测量技术,用于检测水溶液中低碳钢样品的缝隙腐蚀。第一技术使用光腐蚀仪来检测海水中低碳钢样品的诸如缝隙腐蚀的局部腐蚀。光学腐蚀仪的概念基于结合全息干涉测量和循环偏振试验。第二种技术采用基于全息干涉测定法的改进的电化学噪声技术,以检测1M氢氧化钠(NaOH)溶液中低碳钢样品的缝隙腐蚀。目的:强调DC方法旁边检测碳钢中碳钢钢腐蚀光学技术的重要作用。方法:在本研究中使用光腐蚀仪和改性电化学噪声技术。结果:通过光腐蚀仪发现海水中碳钢样品的缝隙腐蚀的观察结果与循环偏振试验一致。此外,发现改性电化学噪声技术对于在1M NaOH溶液中定量区分碳钢样品的局部腐蚀,钝化和均匀腐蚀是非常有用的。结论:发现水溶液中碳钢缝腐蚀的光学技术是有效的光电化学仪器,用于实质性的方法。

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