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On the Capability of In-Situ Exposure in Scanning and Auger Electron Spectroscopy for Investigating Corrosion Property of Engineering Alloys

机译:扫描和俄歇电子能谱法中原位曝光研究工程合金腐蚀性能的能力

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Background: Potentiodynamic polarization experiments were performed on Alloys IN601 and C22 to evaluate their susceptibility to localized corrosion in hydrochloric acid (HCl) at pH2. The tested specimens were evaluated by auger electron spectroscopy (AES) and scanning microscopy (SEM). Nickel chromium alloys consist of surface oxide layers and corrosion products with metallic materials beneath. Methods: Electrochemical techniques are used to examine the pitting tendencies of specimens of IN601 and C22 immersed in a concentrated hydrochloric acid solution (pH2). Techniques include potentiodynamic anodic polarization to determine the active-passive characteristics of alloys and scanning, X-ray, and Auger electron spectroscopy to characterize specimen surfaces in terms of pitting morphologies and for surface analysis of oxide layers. Results: This paper examines the effect of HCl solution on the pitting behaviour of these alloys. Results show that IN601 alloy was characterized by more pitting than C22. Conclusion: There are deeper oxide layers and corrosion products formed on sample surfaces of alloys C22 than in IN601. Furthermore, C22 exhibits a smaller hysteresis loop than IN601, thereby indicating that it has no pitting corrosion in concentrated HCl than IN601.
机译:背景:在IN601和C22合金上进行了电位动力极化实验,以评估它们在pH2的盐酸(HCl)中对局部腐蚀的敏感性。通过俄歇电子能谱(AES)和扫描显微镜(SEM)对测试样品进行评估。镍铬合金由表面氧化物层和腐蚀产物以及下面的金属材料组成。方法:采用电化学技术检查浸入浓盐酸溶液(pH2)中的IN601和C22样品的点蚀趋势。技术包括电位动力学阳极极化,以确定合金的主动-被动特性;扫描,X射线和俄歇电子能谱,以点蚀形态和氧化层表面分析来表征样品表面。结果:本文研究了HCl溶液对这些合金点蚀行为的影响。结果表明,IN601合金比C22具有更多的点蚀特征。结论:与IN601相比,合金C22的样品表面上形成的氧化层和腐蚀产物更深。此外,C22的磁滞回线比IN601小,因此表明它在浓HCl中比IN601没有点蚀。

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