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A composite coating for corrosion protection of AM60B magnesium alloy

机译:用于AM60B镁合金腐蚀防护的复合涂层

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Oxide films have been produced on AM60B magnesium alloy by micro-arc anodic oxidation in an environmentally friendly alkaline solution, with and without addition of nanoparticles (TiO_2, ZrO_2 and Al_2O_3). Because of the anodic oxide porosity, inherent in the sparking process, organo-functional silanes top coat has been applied to seal pores and cracks, and achieve an efficient protective coating system. The surface and cross-section morphology of samples were analyzed by Scanning Electron Microscopy (SEM) coupled with Energy Dispersive Spectroscopy (EDS). Scratch tests were performed for evaluating the adhesion strength and scratch hardness of the anodic oxides to the AM60B substrate. The corrosion resistance of both anodic oxides and oxide/silane composite coatings was evaluated in 0.6M NaCl solution using potentiodynamic polarization tests. The addition of nanoparticles to the anodizing solution doesn't affect significantly the corrosion resistance in comparison with anodic oxides produced in nanoparticles free solutions. Conversely, the adhesion strength and scratch hardness of the anodic oxides to the substrate is quite scattered, and it is higher for the samples produced in ZrO_2 and in Al_2O_3 rich solutions. For this reason specimens anodized in ZrO_2 and Al_2O_3 containing solutions were chosen for silane deposition. Two silanes were used, namely octyltrimethoxysilane (OSi) and 1, 2-bis [triethoxysilyl] ethane (BTSE). The anodizing treatment carried out in oxides nanoparticles containing solutions (ZrO_2 or Al_2O_3), followed by a silane top coat treatment performed using OSi precursor, is an interesting way, suitable for industrial applications, to synthesize adherent corrosion resistant coatings on magnesium alloy AM60B in a short process time.
机译:在AM60B镁合金上,通过在环境友好的碱性溶液中添加和不添加纳米颗粒(TiO_2,ZrO_2和Al_2O_3),通过微弧阳极氧化制备氧化膜。由于火花过程中固有的阳极氧化物孔隙率,已将有机功能硅烷面漆应用于密封孔和裂纹,并实现了有效的保护性涂层系统。通过扫描电子显微镜(SEM)结合能量色散谱(EDS)分析样品的表面和横截面形态。进行刮擦测试以评估阳极氧化物对AM60B基材的附着强度和刮擦硬度。使用电位动力学极化试验在0.6M NaCl溶液中评估了阳极氧化物和氧化物/硅烷复合涂层的耐腐蚀性。与在无纳米颗粒的溶液中产生的阳极氧化物相比,向阳极氧化溶液中添加纳米颗粒不会显着影响耐腐蚀性。相反,阳极氧化物对基材的粘附强度和划痕硬度相当分散,对于在ZrO_2和富Al_2O_3溶液中制备的样品来说,其较高。因此,选择在含ZrO_2和Al_2O_3的溶液中进行阳极氧化的样品进行硅烷沉积。使用了两种硅烷,即辛基三甲氧基硅烷(OSi)和1,2-双[三乙氧基甲硅烷基]乙烷(BTSE)。在包含溶液(ZrO_2或Al_2O_3)的氧化物纳米粒子中进行阳极氧化处理,然后使用OSi前体进行硅烷面涂层处理,是一种有趣的方法,适用于工业应用,用于在镁合金AM60B中合成耐腐蚀涂层。处理时间短。

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