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Design of Corrosion Protective and Antistatic Hybrid Sol-Gel Coatings on 6XXX AlMgSi Alloys for Aerospace Application

机译:6xxx Almgsi合金的腐蚀保护和抗静电杂交溶胶 - 凝胶涂层的应用,用于航空航天应用

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An inorganic–organic coating based on glycidyl-functionalized silica and zirconia was synthesized by sol-gel technology to protect three types of AlMgSi (6XXX series) alloys against corrosion in aerospace applications. Different parameters such as the solid content, the organic/inorganic ratio of the sols and the deposition conditions were studied with the aim to achieve a tradeoff between the corrosion protection, antistatic performance and low vacuum-induced outgassing. Those parameters directly influence the thickness and the density of the coatings, and therefore the barrier effect against corrosion and the contact electrical resistance, which are affected in opposite ways. To obtain a low contact electrical resistance, silver nanowires (NW) with a high aspect ratio were loaded in the sol-gel matrix with the aim to create a conductive path through the hybrid coating with a low concentration of NWs. The coatings were adapted for AA6063, AA6061 and AA6082, and they all showed an outstanding anti-corrosion performance in different artificial weathering tests, whereas electrochemical impedance spectroscopy permitted the identification of the most critical parameters affecting water uptake. An antistatic performance was demonstrated by the low contact electrical resistance of the coated AA6061 and AA6063 alloys, although the incorporation of NWs showed a detrimental effect on the corrosion protection compared with the unloaded coating.
机译:通过溶胶 - 凝胶技术合成基于缩水甘油基官能化二氧化硅和氧化锆的无机 - 有机涂层,以保护三种类型的Almgsi(6xxx系列)合金免受航空航天应用的腐蚀。研究了诸如固体含量,溶胶的有机/无机比和沉积条件的不同参数,目的是在耐腐蚀,抗静电性能和低真空诱导的过析之间实现折衷。那些参数直接影响涂层的厚度和密度,因此对腐蚀的屏障效应和接触电阻,这在相反的方式受影响。为了获得低接触式电阻,在溶胶 - 凝胶基质中加载具有高纵横比的银纳米线(NW),其目的是通过具有低浓度NWS的混合涂层产生导电路径。涂层适用于AA6063,AA6061和AA6082,它们都显示出不同人工风化试验的出色的防腐蚀性,而电化学阻抗光谱允许识别影响水摄取的最关键参数。通过涂覆的AA6061和AA6063合金的低接触电阻证明了抗静电性能,尽管与卸载涂层相比,NW的掺入对耐腐蚀性产生了不利影响。

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