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Fabrication of hydrophobic surface with hierarchical structure on Mg alloy and its corrosion resistance

机译:镁合金表面分层结构疏水表面的制备及其耐蚀性

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摘要

A hydrotalcite/hydromagnesite conversion coating with hierarchical structure has been fabricated on a Mg alloy substrate by in situ hydrothermal crystallization method. A MgO layer existing between the hydrotalcite/hydromagnesite film and the substrate was formed prior to the hydrotalcite/hydromagnesite film during the crystallization process. After surface treatment with silane coupling agent, the surface of conversion coating changes from hydrophilic to hydrophobic. Scanning electron microscopy (SEM) revealed that the silylated conversion coating with hierarchical structure maintains the original rough surface of which was composed of numerous micro-scale flakes and beautiful flower-like protrusions. Polarization measurements have shown that the hydrophobic conversion coating exhibited a low corrosion current density value of 0.432 μA/cm~2, which means that the hydrophobic conversion coating can effectively protect Mg alloy from corrosion. Electrochemical impedance spectroscopy (EIS) showed that the impedance of the hydrophobic conversion coating was 9000 Ω. It means that the coating served as a passive layer with high charge transfer resistance.
机译:通过原位水热结晶法在镁合金基体上制备了具有分层结构的水滑石/菱镁矿转化膜。在结晶过程中,在水滑石/菱镁矿膜和衬底之间形成了MgO层,该层位于水滑石/菱镁矿膜之前。用硅烷偶联剂进行表面处理后,转化膜的表面从亲水性变为疏水性。扫描电子显微镜(SEM)显示,具有分层结构的甲硅烷基化转化膜保持了其原始粗糙表面,该粗糙表面由许多微米级薄片和美丽的花状突起组成。极化测量结果表明,疏水转化膜的腐蚀电流密度值较低,为0.432μA/ cm〜2,这意味着疏水转化膜可以有效地保护Mg合金免受腐蚀。电化学阻抗谱(EIS)显示,疏水转化膜的阻抗为9000Ω。这意味着该涂层用作具有高电荷转移电阻的钝化层。

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