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首页> 外文期刊>Journal of solid state electrochemistry >Electrochemical response of natural and induced passivation of high strength duplex stainless steels in alkaline media
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Electrochemical response of natural and induced passivation of high strength duplex stainless steels in alkaline media

机译:高强度双相不锈钢在碱性介质中自然和诱导钝化的电化学响应

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摘要

The passivation of two high strength duplex stainless steels (HSSS) was investigated in alkaline solutions simulating the pore solution of concrete by the growth of natural and induced passive films. Induced passive films were generated both by cyclic voltammetry and by chronoamperometry. Natural passive films were spontaneously grown by the immersion of the steel in the alkaline electrolyte. These passive layers were characterised by electrochemical impedance spectroscopy, corrosion current density (i _(corr)) and corrosion potential (E _(corr)) monitoring. The effect of significant parameters, such as the pH in the HSSS/alkaline solution interface, the composition of the duplex stainless steels and the ageing of the passive layer, on the electrochemical performance of both induced and spontaneously grown passive films has been analysed. The increase of alkalinity highly influences the electrochemical performance of the passive film by promoting the formation of a passive layer with a less resistant electrochemical response. The electrochemical behaviour of the passive layer is also affected by the alloying elements like Mo or Ni. Both natural and induced passive films show similar electrochemical trend with respect to significant parameters such as the pH and the composition of the steel. The ageing of the spontaneously grown passive layer promotes a higher resistive electrochemical response which might be related to the enrichment of the passive layer in nonconducting (or semi-conducting) oxides.
机译:在碱性溶液中研究了两种高强度双相不锈钢(HSSS)的钝化,通过自然和诱导钝化膜的生长来模拟混凝土的孔隙溶液。通过循环伏安法和计时电流法产生感应的无源膜。通过将钢浸入碱性电解质中,自然地生成了自然钝化膜。这些钝化层的特征在于电化学阻抗谱,腐蚀电流密度(i_(corr))和腐蚀电位(E_(corr))监测。分析了重要参数的影响,例如HSSS /碱溶液界面中的pH,双相不锈钢的成分和钝化层的老化,对诱导和自发生长的钝化膜的电化学性能的影响。碱度的增加通过促进具有较低电阻的电化学响应的钝化层的形成而极大地影响了钝化膜的电化学性能。钝化层的电化学行为也受到合金元素(例如Mo或Ni)的影响。天然和感应钝化膜在重要参数(例如pH值和钢的成分)方面都显示出相似的电化学趋势。自发生长的钝化层的老化促进了较高的电阻电化学响应,这可能与钝化层中非导电(或半导电)氧化物的富集有关。

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