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Gilded bronze conservation: assessment of protective treatments by accelerated ageing and of treatment removal procedures by laser cleaning

机译:镀金铜保护:通过加速老化评估保护性处理,并通过激光清洁评估去除处理的程序

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摘要

In the current study, we analyze the effectiveness of an organosilane compound, 3-mercapto-propyl-tri-methoxy-silane (abbreviated PropS-SH), in the corrosion protection of fire-gilded bronzes. Firstly, the coating was applied on as-gilded bronze. Subsequently, it was also applied on pre-patinated bronze, because the substrate on which protective coatings are applied in real conservation interventions are corroded artifacts (cleaning procedures never remove all the corrosion products). Aiming to obtain results that simulate the situation of real artifacts, a dropping test that simulates outdoor exposure in runoff conditions (unsheltered areas of monuments) was employed in order to prepatinate the gilded bronze samples, which are the substrate for applying the protective coating. The preparation of the samples by applying the protective coating was performed in collaboration with the Corrosion Studies Centre “Aldo Daccò” from Ferrara University. After the artificial exposure cycles the samples underwent investigations through a variety of spectroscopic methods including SEM, Raman, FIB, AAS and color measurements.udIn order to evaluate the possible removal of the organosilane coating, protected samples were subjected to laser cleaning tests and characterized by SEM/EDS so as to assess the changes in composition and morphology of the treated surfaces. The laser cleaning treatment was performed at the Institute of Applied Physics “Nello Carrara” (CNR Sesto Fiorentino (FI)). The morphology and chemical composition of the samples was observed before and after the operation in order to obtain information about the fluence and type of laser which are best suited to the removal of this type of coating.
机译:在当前的研究中,我们分析了有机硅烷化合物3-巯基丙基三甲氧基硅烷(简称PropS-SH)在烫金青铜的腐蚀防护中的有效性。首先,将涂层涂覆在镀金的青铜上。随后,它也被涂在预涂青铜上,因为在实际的保护措施中,在其上施加了保护性涂层的基材是腐蚀的假象(清洁程序永远不会去除所有腐蚀产物)。为了获得模拟真实文物情况的结果,为了模拟镀金的青铜样品(用于涂覆保护涂层的基材),采用了落水测试,该测试模拟了径流条件(纪念碑的不受保护的区域)中的室外暴露。与费拉拉大学腐蚀研究中心“ AldoDaccò”合作,通过施加保护性涂层来制备样品。人工暴露循环后,通过各种光谱方法对样品进行研究,包括SEM,拉曼光谱,FIB,AAS和颜色测量。 ud为了评估有机硅烷涂层的可能去除效果,对受保护的样品进行了激光清洁测试并进行了表征通过SEM / EDS进行分析,以评估处理过的表面的组成和形态变化。激光清洁处理在“ Nello Carrara”应用物理研究所(CNR Sesto Fiorentino(FI))进行。在手术前后观察样品的形态和化学成分,以获得最适合去除此类涂层的有关激光通量和类型的信息。

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    Oancea Andrei-victor;

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