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首页> 外文期刊>Materialpruefung: Werkstoffe und Bauteile, Forschung Prufung Anwendung >Effect of mechanical stress on electrochemical corrosion of X65 carbon steel in CO2 saturated brine
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Effect of mechanical stress on electrochemical corrosion of X65 carbon steel in CO2 saturated brine

机译:机械应力对CO2饱和盐水X65碳钢电化学腐蚀的影响

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摘要

Applied mechanical stress could accelerate the chemical or electrochemical process of metal corrosion in weak acid solution. Series of experimental tests were conducted in this research. The results show that there is no obvious correlation between OCP (open circuit potential) values and applied stresses. However, The LPR (linear polarization resistance)corrosion rate increased intensively under the applied stress of 400 MPa. Correspondingly, the EIS (electrochemical impedance spectroscopy) Nyquist diagrams show that all of the plots contain a semicircle over the whole frequency range and the semicircle size decreased with increasing applied stress. The real-time corrosion current square waves triggered by the mechanical stress were successfully monitored by using the potentiostatic method in CO2 saturated brine under 200 mv (above OCP), flow and lower pll condition. This result is significant for many research fields, such as petrochemistry, aerospace and nuclear industries, which suffer weak acid corrosive environment.
机译:应用的机械应力可以加速弱酸溶液中金属腐蚀的化学或电化学过程。在本研究中进行了一系列实验测试。结果表明,OCP(开路电位)值与施加应力之间没有明显的相关性。然而,LPR(线性偏振电阻)腐蚀速率在400MPa的施加应力下强烈增加。相应地,EIS(电化学阻抗谱)奈奎斯特图表明,所有图中包含整个频率范围内的半圆,并且半圆尺寸随着施加应力的增加而降低。通过在200mV(高于OCP上述OCP),流动和更低的PLL条件下使用CO 2饱和盐水中的电位方法来成功监测由机械应力触发的实时腐蚀电流方波。这一结果对于许多研究领域具有重要意义,例如石化,航空航天和核工业,遭受弱酸腐蚀环境。

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