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Thermodynamics of Inclusion Formation and Its Influence on the Corrosion Behavior of Cu Bearing Duplex Stainless Steels

机译:夹杂物形成的热力学及其对含铜双相不锈钢腐蚀行为的影响

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摘要

To elucidate the thermodynamics of inclusion formation and its influence on the corrosion behavior of Cu bearing duplex stainless steels, potentiodynamic and potentiostatic polarization tests, a SEM-EDS analysis of inclusions, and thermodynamic calculations of the formation of inclusions were carried out. While the resistance-general corrosion of the noble copper contained alloy-1.5Cu in a deaerated 2M H_2SO_4 was higher than that of the alloy-B ASE, the resistance-pitting corrosion of copper contained alloy-1.5Cu in a deaerated 0.5 N HC1 + 1 N NaCl and 30 mass% NaCl was lower than that of the alloy-B ASE due-an increase of interface areas between inclusions and matrix acting as preferential pit initiation sites. The thermodynamic calculation for the formation of Cr-containing oxide inclusions was in good agreement with the experimental results.
机译:为了阐明夹杂物形成的热力学及其对含铜双相不锈钢的腐蚀行为的影响,恒电位和恒电位极化试验,对夹杂物进行了SEM-EDS分析,并对夹杂物的形成进行了热力学计算。脱气的2M H_2SO_4中含铜贵金属-1.5Cu的电阻一般腐蚀高于BASE合金,而脱气的0.5 N HC1 +中含铜-1.5Cu的电阻点蚀。 1 N NaCl和30质量%NaCl比合金-B ASE低,这是由于夹杂物和基体之间的界面面积增加(作为优先蚀坑的起始部位)。形成含铬氧化物夹杂物的热力学计算与实验结果吻合良好。

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