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首页> 外文期刊>Surface & Coatings Technology >Preparation and corrosion resistance of hybrid coatings formed by PEN/C plus PEO on AZ91D magnesium alloys
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Preparation and corrosion resistance of hybrid coatings formed by PEN/C plus PEO on AZ91D magnesium alloys

机译:用PEN / C加上杂交涂层对AZ91D镁合金形成的杂化涂层的制备和耐腐蚀性

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摘要

A novel surface modification technique is developed to further improve the corrosion resistance of AZ91D magnesium alloys. Hybrid coatings were fabricated successfully by a combination of plasma electrolytic nitrocarburizing (PEN/C) and plasma electrolytic oxidation (PEO) on magnesium alloys. The microstructures, element distribution and phase compositions of the coatings were analyzed by SEM, EPMA and XRD, respectively. The potentiodynamic polarization WA and electrochemical impedance spectroscopy (EIS) were employed to evaluate the corrosion resistance of the coatings. The results show that PEN/C process predominantly depends on the adsorption and diffusion effects of the active atoms of [N] and [C], and it creates a good substrate surface with predesigned chemical composition to get newly born phases, such as SiC and Si3N4 with excellent properties, in the following hybrid coatings. PEN/C pretreatment also provide a favorable microstructure to enlarge the coating thickness and to make the coating more compact for the hybrid coatings followed. There exists an overlapping phenomenon regarding coating thickness rather than piling up layer by layer during the formation of the hybrid coatings. The hybrid coatings exhibit more excellent corrosion resistance than both single PEN/C modified layers and single PEO coatings. Particularly, the hybrid coatings can provide relatively superior longterm corrosion protection and suppress the occurrence of the localized corrosion for AZ91D substrates. It is worth noting that the key of this investigation is keeping the PEO process unchanged for both PEO treatment only and PEN/C + PEO combining procedure.
机译:开发了一种新的表面改性技术,进一步提高了AZ91D镁合金的耐腐蚀性。通过在镁合金上的等离子体电解氮碳(PEN / C)和等离子体电解氧化(PEO)的组合成功地制造了混合涂层。通过SEM,EPMA和XRD分析涂层的微观结构,元素分布和相组合物。采用电位动力学极化WA和电化学阻抗光谱(EIS)来评估涂层的耐腐蚀性。结果表明,笔/ C过程主要取决于[n]和[c]的活性原子的吸附和扩散效应,并且它产生良好的基底表面,具有预先级化的化学组合物,以获得新出生的阶段,例如SiC和SiC Si3N4具有优异的性能,在以下杂交涂层中。 PEN / C预处理还提供了有利的微观结构,以扩大涂层厚度,并使涂层更紧凑地用于伴随杂交涂层。在形成杂交涂层期间,存在关于涂层厚度而不是通过层堆积层的重叠现象。杂交涂层比单笔/ C改性层和单一PEO涂层更优异的耐腐蚀性。特别地,杂交涂层可以提供相对优越的长期腐蚀保护,并抑制AZ91D基板的局部腐蚀的发生。值得注意的是,这个调查的关键是保持PEO法不变两种PEO治疗只和PEN / C + PEO合并流程。

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