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Laser Assisted Removal Of Synthetic Painting-conservation Materials Using Uv Radiation Of Ns And/s Pulse Duration: Morphological Studies On Model Samples

机译:Ns和/ s脉冲持续时间的紫外辐射激光辅助去除合成涂料保存材料:模型样品的形态学研究

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In an effort to establish the optimal parameters for the cleaning of complex layers of polymers (mainly based on acrylics, vinyls, epoxys known as Elvacite, Laropal, Paraloid B72, among others) applied during past conservation treatments on the surface of wall paintings, laser cleaning tests were performed with particular emphasis on the plausible morphological modifications induced in the remaining polymeric material. Pulse duration effects were studied using laser systems of different pulse durations (ns and fs) at 248 nm. Prior to tests on real fragments from the Monumental Cemetery in Pisa (Italy) which were coated with different polymers, attention was focused on the study of model samples consisting of analogous polymer films cast on quartz disks. Ultraviolet irradiation is strongly absorbed by the studied materials both in ns and fs irradiation regimes. However, it is demonstrated that ultrashort laser pulses result in reduced morphological alterations in comparison to ns irradiation. In addition, the dependence of the observed alterations on the chemical composition of the consolidation materials in both regimes was examined. Most importantly, it was shown that in this specific conservation problem, an optimum cleaning process may rely not only on the minimization of laser-induced morphological changes but also on the exploitation of the conditions that favour the disruption of the adhesion between the synthetic material and the painting.
机译:为了建立最佳参数,以清洁过去的养护处理过程中应用于壁画,激光表面的聚合物的复杂层(主要基于丙烯酸,乙烯基,称为Elvacite,Laropal,Paralloid B72等的环氧树脂)进行清洁测试时,特别要注意在剩余的聚合物材料中诱导出的合理的形态变化。使用不同的脉冲持续时间(ns和fs)在248 nm的激光系统研究了脉冲持续时间的影响。在对来自意大利比萨的纪念公墓的真实碎片进行测试之前,这些碎片涂有不同的聚合物,研究的重点是研究由流延在石英盘上的类似聚合物薄膜组成的模型样品。在ns和fs照射方式下,紫外线都被研究材料强烈吸收。但是,已证明与ns辐照相比,超短激光脉冲可减少形态变化。另外,检查了两种方案中观察到的变化对固结材料化学成分的依赖性。最重要的是,研究表明,在这个特殊的保护问题中,最佳的清洁过程不仅取决于激光诱导的形态变化的最小化,而且还取决于对合成材料和合成材料之间附着力的破坏有利的条件的利用。这幅画。

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