首页> 外文期刊>Applied Physics >Four-flux model of the light scattering in porous varnish and paint layers: towards understanding the visual appearance of altered blanched easel oil paintings
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Four-flux model of the light scattering in porous varnish and paint layers: towards understanding the visual appearance of altered blanched easel oil paintings

机译:多孔清漆和涂料层中光散射的四通量模型:用于理解涂改后的油画架油画的视觉外观

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摘要

Blanching of easel oil paintings is a recurring alteration that can affect the varnish layer and also the paint layer itself, and strongly alter the visual appearance. Our examinations by field emission gun scanning electron microscopy (FEG-SEM) of altered and unaltered samples revealed the presence of spherical pores in the altered layers, with a pore size ranging from few nanometers to few micrometers. The aim of the present study is to corroborate that the visual appearance modification can be explained by light scattering theories (Mie or Rayleigh depending on the pore size of the considered layer). The four-flux model was used to resolve the radiative transfer equation (RTE) and model the light scattering in porous varnish layers as well as in porous green earth and raw umber oil paint layers. It enables to highlight that the pore size has an important impact on the visual appearance of the altered layer (color and opacity modification). The pore concentration and the thickness of the altered part affect, however, only the opacity. This work points out that the blanching of easel oil paintings is due to light scattering by the pores, which is an important result toward the proposal of adapted and durable future conservation treatments.
机译:画架油画的发白现象是经常发生的变化,可能会影响清漆层以及油漆层本身,并强烈改变外观。我们通过场发射枪扫描电子显微镜(FEG-SEM)对已更改和未更改的样品进行的检查显示,更改后的层中存在球形孔,孔径范围从几纳米到几微米。本研究的目的是证实可以通过光散射理论(Mie或Rayleigh取决于所考虑层的孔径)来解释视觉外观的变化。使用四通量模型来求解辐射传递方程(RTE),并模拟在多孔清漆层,多孔绿土和原始琥珀色油漆层中的光散射。它可以突出显示孔径对更改后的层的外观(颜色和不透明度的改变)具有重要影响。然而,孔的浓度和改变部分的厚度仅影响不透明度。这项工作指出,画架油画的变白是由于孔隙中的光散射所致,这是对未来进行适应性和持久性保护措施提出的重要结果。

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  • 来源
    《Applied Physics》 |2017年第7期|473.1-473.9|共9页
  • 作者单位

    Centre de Recherche et Restauration des Musees de France (C2RMF), Palais du Louvre-Porte des Lions, 14 Quai Francois Mitterrand, 75001 Paris, France,Laboratoire de Chimie biologique (LCB), EA 4505, Universite de Cergy-Pontoise, 5 mail Gay-Lussac, Neuville-sur-Oise, 95031 Cergy-Pontoise Cedex, France,Fondation des Sciences du Patrimoine, Patrima, 33, boulevard du Port, 95011 Cergy-Pontoise Cedex, France;

    Centre de Recherche et Restauration des Musees de France (C2RMF), Palais du Louvre-Porte des Lions, 14 Quai Francois Mitterrand, 75001 Paris, France,Centre de Recherche sur la Conservation (CRC, USR 3224), Museum National d'Histoire Naturelle, Ministere de la Culture et de la Communication, CNRS, CP21, Sorbonne Universites, 36 rue Geoffroy-Saint-Hilaire, 75005 Paris, France;

    Centre de Recherche sur la Conservation (CRC, USR 3224), Museum National d'Histoire Naturelle, Ministere de la Culture et de la Communication, CNRS, CP21, Sorbonne Universites, 36 rue Geoffroy-Saint-Hilaire, 75005 Paris, France;

    Centre de Recherche et Restauration des Musees de France (C2RMF), Palais du Louvre-Porte des Lions, 14 Quai Francois Mitterrand, 75001 Paris, France,Chimie ParisTech-CNRS, Institut de Recherche Chimie Paris, UMR8247, PSL Research University, 75005 Paris, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:06:06

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