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Modelling Reflectance Spectra for Special Effect Pigment Coatings

机译:用于特种效果颜料涂料的反射光谱

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A good calculation model for goniometric reflectance for effect coatings with interference flakes was developed and analysed here. For this purpose, reflectance spectra for coatings were applied with Iriodin 4504 from Merck, a metal lustre coating using interference mica-based pigments coated with iron (III) oxide. The numerical model used for computation incorporates three parts of the light scattering behaviour; scattering from the front surface of the coating, scattering from pigments inside the coating and scattering from the coating substrate. In order to validate the model, reflectance spectra were measured at an incident angle of 45o and at reflected angles of 60o, 30o, 20o, 0o, -20o and -65o using a commercial multi-angle spectrometer. The thickness of the interference coating applied on the flakes was adjusted to obtain good matches of interference features between modelled and measured reflectance. The influence of surface coverage by pigments and the pigment slope distribution on the resulting spectra was analysed. The first parameter represents the fraction of surface area covered with pigments and the second tells us how well the pigments inside the coatings are oriented.
机译:在此开发并分析了具有干涉薄片的效应涂层的焦电反射率的良好计算模型。为此目的,使用涂有铁(III)氧化铁的干扰云母基颜料,将用于涂层的反射光谱涂覆涂料的反射光谱。用于计算的数值模型包括光散射行为的三个部分;从涂层的前表面散射,从涂层内的颜料散射并从涂层基板散射。为了验证模型,使用商业多角度光谱仪以450的入射角和600,300,00,0O,-20O和-65O的反射角度测量反射光谱。调整施加在薄片上的干涉涂层的厚度,以获得建模和测量反射之间的干扰特征的良好匹配。分析了颜料表面覆盖的影响和颜料斜率分布在所得光谱上。第一个参数表示用颜料覆盖的表面积的分数,第二个参数告诉我们涂层内的颜料有多展示。

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