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Visual and instrumental assessments of color differences in automotive coatings

机译:目测和仪器评估汽车涂料中的色差

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摘要

The interest in gonioapparent pigments (metallic, pearlescent, interference, or diffractive) has increased in the last few years, especially for applications in the automotive industry. To assure a proper characterization of colors with gonioapparent pigments, commercial devices have appeared to characterize the color in different geometries, which are called multiangle spectrophotometers. As the gonioapparent pigments and multiangle instruments are relatively new, no studies exist regarding the instrumental-based procedure followed in the industry, and if the results provided are in agreement with the observer perception. Consequently, the main objective of this study was to examine the correlation of the instrumental color differences with visual assessments. The instrumental color difference was calculated with the color difference formula AUDI2000 (specific for this sector) between the pairs of similar samples of three types of coated panels (solid, metallic, and pearlescent). The values measured by a telespectroradiometer in a directional lighting booth and the colorimetric values obtained by means of a multiangle spectrophotometer BYK-mac were considered for this purpose. Additionally, a visual experiment was conducted to quantify the color difference by using the gray-scale method. The results revealed that an acceptable instrumental correlation existed despite the visual and the instrumental correlation being worse. In particular, it was checked that observers accepted a larger number of color pairs, that is, the visual color difference was smaller than the tolerance demanded by the industry (derived from AUDI2000).
机译:在最近几年中,人们对gonioapparent颜料(金属,珠光,干涉或衍射)的兴趣有所增加,尤其是在汽车工业中。为了确保用角表观颜料对颜色进行适当的表征,已经出现了商用设备来表征不同几何形状的颜色,这被称为多角度分光光度计。由于gonioapparent颜料和多角度仪器相对较新,因此在行业中尚无有关基于仪器的程序的研究,并且如果提供的结果与观察者的看法相符。因此,这项研究的主要目的是检查仪器颜色差异与视觉评估的相关性。在三种类型的涂层面板(实心,金属和珠光)的成对相似样品对之间,使用色差公式AUDI2000(专用于此行业)计算仪器色差。为此目的,考虑了在定向照明室中通过远射光谱仪测量的值和通过多角度分光光度计BYK-mac获得的比色值。另外,进行了视觉实验以通过使用灰度方法来量化色差。结果表明,尽管视觉和仪器相关性较差,但仍存在可接受的仪器相关性。尤其要检查的是,观察者接受了更多的颜色对,即视觉色差小于行业要求的公差(源自AUDI2000)。

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