首页> 外文会议>Meeting of the Electrochemical Society >Electrochemical Hydrogen Permeation Tests under Conventional Potentiostatic Hydrogen Charging Conditions for Hydrogen Embrittlement Study
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Electrochemical Hydrogen Permeation Tests under Conventional Potentiostatic Hydrogen Charging Conditions for Hydrogen Embrittlement Study

机译:在氢气脆化研究中常规肺液氢气充电条件下的电化学氢渗透试验

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Electrochemical hydrogen permeation tests were carried out under potentiostatic hydrogen charging conditions in various solutions, and the hydrogen entry behavior was compared with that of galvanostatic method. The relationship between hydrogen permeation current density and potential was similar in potentiostatic and galvanostatic methods and wide range of hydrogen concentration could be covered as well as galvanostatic method by varying NH_4SCN content and potential. However, slight differences in hydrogen permeation current density and efficiency of hydrogen entry were seen between the methods, and the stability of hydrogen entry of potentiostatic method was slightly higher than that of galvanostatic method. In both methods, hydrogen permeation current density tended to increase with time in a NH_4SCN containing solution suggesting that it is recommended to measure resulted hydrogen content by means of thermal desorption analysis for accuracy, though the relationship between hydrogen permeation current density and potential can be used as a rough standard.
机译:电化学氢渗透试验在各种溶液中的电位型氢气充电条件下进行,并将氢进入行为与电镀方法进行比较。氢渗透电流密度和电位的关系是可以通过改变NH_4SCN内容和潜在的被覆盖以及恒电流法在恒电位和恒电流方法和广泛的氢浓度的相似。然而,在该方法之间看到氢渗透电流密度和氢气进入效率的轻微差异,并且电位静脉法的氢气进入的稳定性略高于电压静脉法的稳定性。在这两种方法中,氢渗透电流密度随着含NH_4SCN的溶液中的时间而增加,表明它建议通过热解吸分析测量得到的氢含量以获得精度,但是可以使用氢渗透电流密度和电位之间的关系作为一个粗略的标准。

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