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首页> 外文期刊>Surface and Interface Analysis: SIA: An International Journal Devoted to the Development and Application of Techniques for the Analysis of Surfaces, Interfaces and Thin Films >Corrosion and tribocorrosion behaviour of super-thick diamond-like carbon films deposited on stainless steel in NaCl solution
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Corrosion and tribocorrosion behaviour of super-thick diamond-like carbon films deposited on stainless steel in NaCl solution

机译:NaCl溶液中沉积在不锈钢上的超厚类金刚石碳膜的腐蚀和摩擦腐蚀行为

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摘要

Super-thick diamond-like carbon (DLC) film is a potential protective coating in corrosive environments. In the present work, three kinds of DLC films whose thickness and modulation periods are 4 Iltm and 3, 21 gm and 17 and 21 pm and 7, respectively, were fabricated on stainless steel. The effect of different thickness and modulation periods on corrosion and tribocorrosion behaviour of the DLC-coating stainless steel was investigated in 3.5 wt% NaCI aqueous solution by a ball-on-flat tribometer equipped with a three -electrode electrochemical cell. The DLC-coating stainless steel served as a working electrode, and its OCP and potentiodynamic polarization were monitored before and during rubbing. The wear-corrosion mechanism of the DLC films was investigated by SEM. The results showed that the increasing thickness can prolong significantly lifetime of DLC films in NaCI aqueous solution. In particular, the modulation period has a significant impact on the tribocorrosion resistance of the DLC super -thick films. The study suggested that the increasing thickness of compressive stress layer could suppress film damage by reducing crack propagation rate. Thus, the super-thick DLC film with thickness of 21 pm and 7 periods presented the best tribocorrosion resistance among all studied films. Copyright (C) 2016 John Wiley & Sons, Ltd.
机译:超厚类金刚石碳(DLC)膜是腐蚀性环境中的潜在保护涂层。在目前的工作中,在不锈钢上制造了三种厚度和调制周期分别为4 Iltm和3、21 gm和17和21 pm和7的DLC膜。通过配备三电极电化学池的平板式球形摩擦计,研究了在3.5 wt%的NaCl水溶液中,不同厚度和调制周期对DLC涂层不锈钢的腐蚀和摩擦腐蚀行为的影响。涂有DLC的不锈钢用作工作电极,在摩擦之前和摩擦期间监测其OCP和电位动力学极化。用扫描电镜(SEM)研究了DLC薄膜的磨损腐蚀机理。结果表明,增加厚度可以显着延长NaCl水溶液中DLC膜的寿命。尤其是,调制周期对DLC超厚膜的抗摩擦腐蚀性能有重要影响。研究表明,增加压应力层的厚度可以通过降低裂纹扩展速率来抑制薄膜损伤。因此,在所有研究的薄膜中,厚度为21 pm和7个周期的超厚DLC薄膜表现出最佳的抗摩擦腐蚀性能。版权所有(C)2016 John Wiley&Sons,Ltd.

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