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Gloss and Goniocolorimetry of Printed Materials

机译:印刷材料的光泽度和色度法

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Angular distribution of reflectance spectra and of colorimetric parameters for printed papers (varnished and not) and foils, clear and metallized, were measured by goniospectrophotometry, with a photomultiplier for visible region, or a spectrocolorimeter as a detector, keeping the light source in a fixed position, -45° anormally. All reflectance spectra were related to near-Lambertian BaSO_(4) powder white standard, relative to which the color coordinates were calculated. The photometric cosine law holds for an ideal diffuser; consequently, all color parameters are significantly perturbed by gloss in a large region, several 10's of degrees around the specular angle. The reflectance peak in the specular angle region of glossy material can be well approximated by the Lorentz function, especially in the vicinity of the specular angle. Lightness, chroma, and hue angle in the gloss angle region suffer as a result of high changes and extremes depending on the gloss of the material tested. This is what complicates color measurements and full determination or definition of the complex appearance of printed materials. The change of chroma with varnishing of glossless materials was clearly elucidated. It was found that "bottom color gloss" considerably influences the appearance of printed metallized foils or other prints on high glossy substrates.
机译:透明和金属化的印刷纸(清漆的和未涂漆的)和箔的反射光谱和比色参数的角分布,通过角分光光度法,使用可见光倍增器或分光色度计作为检测器,通过角分光光度法进行测量,将光源固定在固定位置位置,通常为-45°。所有反射光谱均与近朗伯型BaSO_(4)粉末白色标准相关,相对于该标准计算色坐标。光度余弦定律适用于理想的漫射器。因此,所有颜色参数都会在很大的范围内受到光泽的干扰,大约在镜面反射角周围10度。洛伦兹函数可以很好地估计光泽材料的镜面反射角区域中的反射峰,尤其是在镜面反射角附近。光泽角区域中的亮度,色度和色相角受测试材料的光泽度的高变化和极端影响。这使颜色测量,印刷材料复杂外观的完全确定或定义变得复杂。清楚地阐明了色度随无光泽材料的清漆的变化。已经发现“底色光泽”极大地影响了在高光泽度基材上印刷的金属化箔或其他印刷品的外观。

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