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Enhanced corrosion protection of magnesium oxide coatings on magnesium deposited by ion beam-assisted evaporation

机译:通过离子束辅助蒸发沉积的镁上的氧化镁涂层增强了腐蚀防护

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In contrast to other light materials such as aluminium or titanium, the potential of magnesium to form stable, corrosion-resistant films is limited to alkaline solutions. In neutral, acidic or saline solutions the protective hydroxide or carbonate film breaks through immediately and heavy corrosion takes place. The aim of this work was to deposit protective magnesium oxide layers, by ion beam-assisted deposition (IBAD), which do not grow under natural circumstances. These coatings are different from coatings obtained by anodic oxidation, because of their partial crystallinity, good adhesion and very smooth, non-porous character. The MgO coatings were prepared with IBAD on Mg (hp), AZ91 magnesium alloy and AlMgSi0.5 substrates by the evaporation of high-purity MgO under bombardment with Ar+ ions with energies up to 15 keV. The Ar+ to MgO arrival ratio was chosen in order to obtain dense coatings. The coating thickness was 1 mu m. The electrochemical and corrosion behaviour were determined by potentiodynamic controlled current-potential measurements under pitting corrosion conditions and a standard salt-spray test. The crystallinity was determined by X-ray diffraction measurements and the surface quality by atomic force microscopy. The results prove that by IBAD, magnesium oxide coatings with or without the addition of other elements (Sn, Nd) of high hardness and low porosity and with good corrosion protection properties can be formed. The degree of crystallinity and the texture have a strong influence on the quality of the coatings acid depend on the ion energy. (C) 1998 Elsevier Science S.A. [References: 9]
机译:与其他轻质材料(例如铝或钛)相比,镁形成稳定的耐腐蚀膜的潜力仅限于碱性溶液。在中性,酸性或盐溶液中,氢氧化物或碳酸盐保护膜会立即破裂,并发生严重腐蚀。这项工作的目的是通过离子束辅助沉积(IBAD)沉积保​​护性氧化镁层,该保护层在自然环境下不会生长。这些涂层与通过阳极氧化获得的涂层不同,因为它们具有部分结晶性,良好的附着力和非常光滑的无孔特性。用IBAD在Mg(hp),AZ91镁合金和AlMgSi0.5基体上制备MgO涂层,方法是在能量高达15 keV的Ar +离子轰击下蒸发高纯度MgO。选择Ar +与MgO的到达比以获得致密的涂层。涂层厚度为1μm。电化学和腐蚀行为通过在点蚀条件下的电位动力学控制电流电位测量和标准的盐雾试验确定。通过X射线衍射测量来确定结晶度,并且通过原子力显微镜来确定表面质量。结果证明,通过IBAD,可以形成具有或不具有高硬度和低孔隙率的其他元素(Sn,Nd)并且具有良好的防腐蚀性能的氧化镁涂层。结晶度和质地对涂层质量的影响很大,酸取决于离子能量。 (C)1998 Elsevier Science S.A. [参考:9]

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