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The Ultrasonically Induced Cavitation Corrosion of UNS N10665 Alloy in Seawater

机译:UNS N10665合金在海水中的超声空化腐蚀

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Cavitation conditions using a vibratory cavitation testing were imposed on alloy UNS N10665 in seawater. Free corrosion potentials and mass loss in the presence and absence of cavitation were also determined for this alloy. The cavitation tests were made at a frequency of 20 KHz and at temperatures of 25°C. Cavitation conditions caused a noble shift in the free corrosion potential for this alloy. Cavitation also increased the rate of mass loss of this alloy by several orders of magnitude with respect to stagnant conditions. Another set of cavitation experiments was also carried out for this alloy in a distilled water in order to distinguish between the mechanical and electrochemical factors that contribute to metal loss. Results indicated that the mechanical factor has an over-riding role in metal loss of this alloy. Cavitation made the surface of this alloy very rough, exhibiting large cavity pits in the middle region of the attacked area as revealed by the scanning electron microscope (SEM). Mechanical, electrochemical and metallurgical factors were determined to be the leading cause of metal loss.
机译:在海水中对UNS N10665合金施加了使用振动空化测试的空化条件。还确定了该合金在存在和不存在气蚀的情况下的自由腐蚀电位和质量损失。空化测试是在20 KHz的频率和25°C的温度下进行的。空化条件导致该合金的自由腐蚀势发生了高尚的变化。相对于停滞条件,空化还使这种合金的质量损失速率提高了几个数量级。为了在造成金属流失的机械和电化学因素之间进行区分,还在蒸馏水中对该合金进行了另一组空化实验。结果表明,机械因素在该合金的金属损失中具有重要作用。空化使该合金的表面非常粗糙,如扫描电子显微镜(SEM)所示,在被腐蚀区域的中间区域显示出大的凹坑。机械,电化学和冶金因素被确定为金属损失的主要原因。

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