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Evaluation of the Hydrogen Embrittlement Behaviour by Means of the Permeation Current Measure in Slow Strain Rate Conditions of a Micro-Alloyed Steel

机译:借助于微合金钢慢菌速率条件下渗透电流测量氢脆性能的评价

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The measure of the hydrogen permeation current through a metal membrane is a well-consolidated electrochemical technique to evaluate the effect of the environment, the polarisation and the type of steel related to hydrogen diffusion. Permeation tests allow to evaluate the stationary flow of hydrogen and the degree of surface coverage. In this work, permeation tests were carried out in a 35g/L NaCl solution at -1.05 V and -2 V vs. SCE on a pipeline micro-alloyed steel. The permeation current was measured on samples without load, with a constant load applied and in slow strain rate conditions. Afterwards, hydrogen permeation parameters were correlated to the results of Slow Strain Rate Tests (SSRT) in order to improve the knowledge on the hydrogen embrittlement mechanism of this type of steels.
机译:通过金属膜的氢渗透电流的测量是一种良好的巩固电化学技术,以评估环境的效果,偏振和与氢扩散相关的钢的效果。渗透测试允许评估氢气的静止流量和表面覆盖程度。在这项工作中,在管道微合金钢的-1.05V和-2V和-2V与SCE的35g / L NaCl溶液中进行渗透试验。在没有负载的样品上测量渗透电流,施加恒定的载荷和慢菌株条件。然后,氢渗透参数与慢菌速率试验(SSRT)的结果相关,以改善这种钢的氢脆机理的知识。

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