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Electrochemical corrosion behaviours of AISI 304 austenitic stainless steel in NaCl solutions at different pH

机译:不同pH下NaCl溶液中AISI 304奥氏体不锈钢的电化学腐蚀行为

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The corrosion behaviour of austenitic AISI 304 grade stainless steel was studied in 3.5 wt. % NaCl solution. The pH of NaCl solution was controlled by the H2SO4 acid droplet. The OCP measurements were found that the corrosion behaviour of the steel specimens at different solution pH can be identified in the 1-2 hours of immersion period. After that the OCP curves were then remained horizontally linear up to 120 hours immersion. The low pH of NaCl solution recorded more electropositive OCP, whereas the high pH reduce its OCP value. The polarization analysis revealed by the Tafel plot shows the presence of aggressive anions (Cl~- and SO42~-) in the solution causes the metal surface more susceptible to the pitting corrosion. The high corrosion rate was occurred in low pH solution, whereas the rate of corrosion was relatively moderate at a high pH solution. The stereo microscope images show the worst pitting formation occur at pH 4 and its relatively decreases at higher pH solutions.
机译:在3.5重量%中研究了奥氏体Aisi 304级不锈钢304级不锈钢的腐蚀行为。 %NaCl溶液。通过H 2 SO 4酸液体控制NaCl溶液的pH。发现OCP测量结果,可以在浸渍期1-2小时内鉴定不同溶液pH下钢样品的腐蚀行为。之后,然后将OCP曲线保持水平线性,最多120小时浸泡。 NaCl溶液的低pH记录了更多的电动OCP,而高pH降低了其OCP值。 Tafel Plot揭示的偏振分析显示溶液中腐蚀性阴离子(Cl〜 - 和SO42〜 - )的存在使得金属表面更容易受到蚀腐蚀的影响。在低pH溶液中发生高腐蚀速率,而腐蚀速率在高pH溶液中相对中等。立体显微镜图像显示在pH4处发生最差的点蚀形成,并且在更高的pH溶液中相对降低。

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