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Effect of Surface Conditions and Relative Humidity on Hydrogen Permeation Behavior of Zinc Coated Steels during Wet and Dry Corrosion

机译:表面条件和相对湿度对湿腐蚀和干腐蚀过程中镀锌钢氢渗透行为的影响

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摘要

The effects of scratch, surface element composition, and relative humidity on the hydrogen permeation behavior of zinc coated steels during wet and dry cycle corrosion tests were investigated. The permeating hydrogen was measured electrochemically, and a size controlled scratch was formed on zinc coated steels with a laser machining technique. The hydrogen permeation current was observed on the zinc coated steels with a formed scratch (S-coated): no significant hydrogen permeation current was observed on the zinc coated steel without the formed scratch (NS-coated) or on steel with zinc coating removed by mechanical grinding (R-steel). The zinc corrosion products effectively reduced the hydrogen permeation current from the S-coated at low relative humidity. The total amount of permeating hydrogen per unit area of formed scratch was independent of the area of the formed scratch in wet and dry cycling.
机译:研究了刮擦,表面元素组成和相对湿度对湿,干循环腐蚀试验中镀锌钢氢渗透行为的影响。电化学测量渗透的氢,并通过激光加工技术在镀锌钢上形成尺寸受控的划痕。在形成划痕(S涂层)的镀锌钢上观察到氢渗透电流:在未形成划痕(NS涂层)的镀锌钢上或在去除了锌涂层的钢上未观察到明显的氢渗透电流。机械研磨(R型钢)。锌腐蚀产物在低相对湿度下有效降低了S涂层的氢渗透电流。在湿式和干式循环中,每单位形成的划痕的渗透氢的总量与形成的划痕的面积无关。

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