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首页> 外文期刊>Tribology International >Effect of applied potential on the tribocorrosion behaviors of Monel K500 alloy in artificial seawater
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Effect of applied potential on the tribocorrosion behaviors of Monel K500 alloy in artificial seawater

机译:施加电势对Monel K500合金在人工海水中的摩擦腐蚀行为的影响

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摘要

A systematic investigation has been carried out in the present work to study the electrochemical and tribocorrosion behaviors of Monel K500 alloy sliding against Al_2O_3 pin in artificial seawater. It can be observed that the cathodic shift of open circuit potential and two order of magnitude increase of current density formed due to sliding. The total tribocorrosion volume loss increases with increasing applied potential. Interestingly, the total material loss at applied potential of 0.5 V and 0.9 V is more than three times of that under pure mechanical wear, confirming the synergy between wear and corrosion. The contribution of wear-induced-corrosion (ΔK_c) and corrosion-induced-wear (ΔK_w) are dominant especially at high applied potential.
机译:目前的工作已进行了系统的研究,以研究Monel K500合金在人造海水中在Al_2O_3销钉上滑动的电化学和摩擦腐蚀行为。可以观察到,由于滑动而形成的开路电位的阴极移位和电流密度的两个数量级的增加。总的摩擦腐蚀体积损失随着施加电势的增加而增加。有趣的是,在施加电压0.5 V和0.9 V时的总材料损耗是纯机械磨损下的三倍以上,证实了磨损与腐蚀之间的协同作用。磨损引起的腐蚀(ΔK_c)和腐蚀引起的磨损(ΔK_w)的贡献尤其显着。

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