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Electrochemical hydrogen permeation tests under galvanostatic hydrogen charging conditions conventionally used for hydrogen embrittlement study

机译:常规用于氢脆研究的恒电流充氢条件下的电化学氢渗透测试

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Electrochemical hydrogen permeation tests using pure Fe sheet specimens were performed under various galvanostatic hydrogen charging conditions commonly applied to tensile test specimens used for evaluation of hydrogen embrittlement property to obtain a guideline for efficient hydrogen charging method for a wide range of hydrogen content. Aqueous NaCl solutions containing varied concentrations of ammonium thiocyanate and a 0.1-m NaOH solution were used as electrolytes for relatively high and low hydrogen content, respectively. Addition of ammonium thiocyanate changes the mechanism of hydrogen evolution reaction and enhances hydrogen entry. By changing the concentration of ammonium thiocyanate and by changing cathodic current density, a wide range of hydrogen content can be covered. The hydrogen content in an AISI 4135 steel estimated from hydrogen permeation current density obtained for a pure Fe specimen was in good agreement with the hydrogen content experimentally measured by hydrogen thermal desorption analysis for the AISI 4135 steel. The hydrogen permeation current density data in various hydrogen charging conditions can be used as a reference for hydrogen charging of specimens.
机译:使用纯铁片状样品进行的电化学氢渗透测试是在各种恒电流充氢条件下进行的,这些条件通常应用于评估氢脆性的拉伸试验样品,从而为广泛的氢含量提供了有效的氢填充方法的指南。含有不同浓度的硫氰酸铵的NaCl水溶液和0.1-m的NaOH溶液分别用作相对较高和较低氢含量的电解质。硫氰酸铵的加入改变了析氢反应的机理并增强了氢的进入。通过改变硫氰酸铵的浓度和改变阴极电流密度,可以覆盖广泛的氢含量。由纯铁样品获得的氢渗透电流密度估算出的AISI 4135钢中的氢含量与通过AISI 4135钢的氢热脱附分析实验测得的氢含量高度吻合。各种充氢条件下的氢渗透电流密度数据可以作为试样充氢的参考。

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