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电化学(中英文) ›› 1998, Vol. 4 ›› Issue (1): 12-17. 

• 研究论文 • 上一篇    下一篇

微电极法研究不锈钢点腐蚀发生发展过程

林昌健,陈丽江,杜荣归,冯祖德,谭建光,戴鸿平   

  1. 厦门大学固体表面物理化学国家重点实验室
  • 收稿日期:1998-02-28 修回日期:1998-02-28 出版日期:1998-02-28 发布日期:1998-02-28

Microelectrode Studies on the Pitting Corrosion Process of Stainless Steel

Lin Changjian*    Chen Lijian    Du Ronggui    Feng Zude    Tang Jianguang    Dai Hongping   

  1. (State Key Lab for Phys. Chem. of Solid Surfs., Dept. of Mat. Sci., Dept. of Chem., Inst. of Phys. Chem., Xiamen University, Xiamen 361005)
  • Received:1998-02-28 Revised:1998-02-28 Published:1998-02-28 Online:1998-02-28

摘要: 应用微电极法研究不锈钢点腐蚀发生发展过程,首次获得不锈钢夹杂物缺陷在阳极活化电位的活性溶解信息和点腐蚀发展过程蚀点生长和消止两个相互竞争、不断发展的动态行为,深化对夹杂物缺陷诱导点腐蚀的发生及点腐蚀发展过程机理的认识。实验表明,应用微电极技术研究点腐蚀过程可具有若干明显特点:a.由于界面双层电容和背景电流的大幅度降低,有利于检测点腐蚀发生和发展过程快速、信号微弱;b.可考察夹杂物缺陷的电化学活性及其诱导点腐蚀成核的重要作用;c.可研究单孔点腐蚀发展的动态行为及影响因素。

关键词: 不锈钢, 微电极, 点腐蚀, 机理, 研究方法

Abstract: Abstract Differing with the scanning microelectrode techniques, which scan microelctrode closely to the interface of electrode/electrolyte and make electrochemical imaging in a lateral spatial resolution, the technique of microelectrode with a micron diameter is of very high timeresolution and ratio of signal/noise in electrochemical measurements. The microelectrode technique allows doublelayer capacitance and background current for a microelectrode to be drastically reduced due to the exposed area of a microelectrode is usually 6~8 orders of magnetite lower than that of a conventional electrode with largescale exposed area. Microelectrode was recently developed as a new powerful electrochemical technique and widely used in the studies of electrochemical kinetics, electrodeposition, electroanalysis and batteries. However, most of the microelectrodes was limited with the novel metals, such as Pt and Au, and only a little of work has reported on using microelectrode in corrosion research. In the present work, the microelectrode technique was developed to study the initiation and propagation of pitting corrosion of 18/8 stainless steel. The insight into the dissolution process of inclusion defects at the anodic potential of active dissolution and the dynamic behavior of growth and ceases for the micropitting during its development was attained. Microelectrode technique may offer a numbers of advantages for further recognizing the mechanism of pitting corrosion: to catch the fast and weak signal in an early stage of pitting initiation because of extreme low in both of doublelayer capacitance and background current for a microelectrode; to clarify the dependence of pitting nucleation on the inhomogenious defects; and to follow the propagation process for a simulated single pitting corrosion.

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