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Lanthanum-Silica Sol-Gel Coatings for Protecting Metallic Materials in Museums: Approaches to Copper, Bronze, Lead and Steel

机译:博物馆中用于保护金属材料的镧硅溶胶凝胶涂层:铜,青铜,铅和钢的制备方法

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Museum objects made from metals face the challenge of delaying corrosion in exhibition rooms, showcases and holdings. This study examined some innovative solutions used to protect such items based on sol-gel coatings doped with lanthanum. These coatings were prepared from sols based on TEOS as a precursor. Lanthanum acetateitrate was added as a doping agent and corrosion inhibitor. The coatings were deposited upon slabs of copper, bronze, lead and steel, since they are among the most common metals present in museums items. The coatings application was accomplished by immersion-extraction, and the remaining sols were gelled and characterized by Fourier transformed infrared spectroscopy and differential thermal analysis and thermogravimetry. To evaluate the behaviour and resistance of the coatings, tests of accelerated aging were carried out in climatic and Kesternich chambers, as well as under an atmosphere saturated with organic acids and under UV irradiation. The simulated conditions tested were undertaken to approach real conditions inside a conventional museum showcase. The microstructure of the coatings before and after accelerated aging tests was observed through optical and field emission scanning electron microscopies. The results indicated that these coatings can be a useful preventive, conservation avenue to protect copper, bronze and lead items exhibited in museums.
机译:由金属制成的博物馆物品面临着延缓展览室,陈列柜和藏品中腐蚀的挑战。这项研究研究了一些创新的解决方案,这些解决方案用于保护掺有镧的溶胶-凝胶涂料。这些涂料是由以TEOS为前体的溶胶制成的。加入乙酸镧/硝酸镧作为掺杂剂和腐蚀抑制剂。涂层被沉积在铜,青铜,铅和钢的平板上,因为它们是博物馆物品中最常见的金属之一。涂料的应用是通过浸没萃取完成的,其余的溶胶则通过傅立叶变换红外光谱,差热分析和热重分析法进行凝胶化和表征。为了评估涂层的性能和耐性,在气候室和Kesternich室中以及在有机酸饱和的气氛下和在UV辐射下进行了加速老化的测试。进行测试的模拟条件是为了接近常规博物馆展示柜中的实际条件。通过光学和场发射扫描电子显微镜观察了加速老化测试前后的涂层微观结构。结果表明,这些涂层可以作为保护博物馆中展出的铜,青铜和铅物品的有用的预防性养护途径。

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