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Increasing corrosion resistance of a ZrTi alloy with a bioinspired coating with low porosity

机译:提高ZRTI合金的耐腐蚀性与低孔隙率的生物悬浮涂层

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The paper is focused on elaboration and characterization of bioinspired coatings on ZrTi with different porosities as a result of various components ratio of hydroxyapatite (Hap) and chitosan (CS). Three different ratios of HAp:CS were used for coating the specimens. The coatings surface was analyzed using scanning electron microscopy (SEM) and by measuring the contact angles. All samples have a hydrophilic character, which is more significant for lowest chitosan content. The corrosion resistance was investigated in Afnor artificial saliva using Tafel procedure and EIS technique. Corrosion current variations can be attributed to defects present in the coating. Pores present in the coating connected the electrolyte to the substrate surface and the results an acceleration of corrosion. A stability scale was established according to corrosion rate of samples and their porosity, indicating as most resistant to corrosion the sample with lowest porosity. The impedance data and the equivalent circuits presented were obtained for both the uncoated and coated samples immersed at initial time and at time higher than 24h. EIS data permitted a discussion of diffusion process as well.
机译:本文的重点是由于羟基磷灰石(HAP)和壳聚糖(CS)的各种组分比例,具有不同孔隙率的ZRTI对ZRTI对ZRTI的生物悬浮涂层的拟订和表征。三种不同的HAP比率:Cs用于涂覆样品。使用扫描电子显微镜(SEM)分析涂层表面,并通过测量接触角。所有样品都具有亲水性,对于最低壳聚糖含量更为显着。使用Tafel程序和EIS技术在AFNOR人造唾液中研究了耐腐蚀性。腐蚀电流变化可归因于涂层中存在的缺陷。涂层中存在的孔连接到基板表面的电解质,结果加速腐蚀。根据样品的腐蚀速率及其孔隙率建立稳定标度,表明最耐孔隙率最低的样品腐蚀。呈现的阻抗数据和所呈现的等效电路对于在初始时间和时间高于24h时浸没的未涂覆和涂覆的样品。 EIS数据允许讨论扩散过程。

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