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Influence of potentials on the tribocorrosion behavior of 304SS in artificial seawater

机译:电位对人造海水中304SS摩擦腐蚀行为的影响

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Corrosive wear involves chemical and mechanical mechanisms and the combination of these mechanisms often results in accelerated materials degradation. In this work, pin-on-disk friction experiments were carried out in artificial seawater to investigate the influence of applied potential on the tribocorrosion behavior of 304SS. The obtained results demonstrate that when the applied potential was below the pitting potential of passive film, corrosion and wear interacted to make the total material loss increase obviously; however, when it exceeded this pitting potential, corrosion was inhibited by the rubbing process. Study of the worn surfaces and the cross-sections indicate that depending on varying applied potential, different features of wear tracks were involved, and it was the form of mechanical and corrosion-accelerated delamination wear that determined the total mass loss of 304SS during tribocorrosion.
机译:腐蚀磨损涉及化学和机械机制,这些机制的结合通常会导致材料加速降解。在这项工作中,在人造海水中进行了针盘摩擦试验,以研究施加电势对304SS摩擦腐蚀行为的影响。所得结果表明,当施加电位低于钝化膜的点蚀电位时,腐蚀与磨损相互作用,使材料的总损耗明显增加。然而,当其超过该点蚀电位时,腐蚀会被腐蚀过程抑制。对磨损表面和横截面的研究表明,取决于变化的施加电势,涉及到不同的磨损痕迹,而机械磨损和腐蚀加速分层磨损的形式决定了摩擦期间304SS的总质量损失。

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