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Deducing ink thickness variations of fluorescent print by a spectral prediction model

机译:通过光谱预测模型推断荧光打印的墨水厚度变化

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In the color printing process, the thickness and uniformity of ink have a great affect on the color reproduction. The ink thickness uniformity is an important parameters of measuring the quality of printing. Based on the fluorescent additives may absorb ultraviolet light and exit blue light or visible light and by considering the expansion of the ink, optical properties of paper with fluorescent additives , the internal lateral spread of light in paper with fluorescent additives and the fluorescent Clapper-Yule spectral reflectance prediction model, we introduce two factor parameters which are the initial thickness of the inks and the factor of ink thickness variation. A model for deducing ink thickness variations of printing on the fluorescent substrate is developed by the least square method and the spectrum reflectance of prints which measures the ink thickness variations. The correctness of the conclusions are verified by experiment.
机译:在彩色印刷过程中,墨水的厚度和均匀度对色彩还原有很大影响。油墨厚度均匀性是衡量印刷质量的重要参数。基于荧光添加剂可以吸收紫外光并出射蓝光或可见光,并考虑到墨水的膨胀,具有荧光添加剂的纸张的光学性能,具有荧光添加剂的纸张在纸张内部的内部横向扩散以及具有荧光性的拍板油在光谱反射率预测模型中,我们引入了两个因素参数,即墨水的初始厚度和墨水厚度变化的因素。通过最小二乘法和用于测量油墨厚度变化的印刷品的光谱反射率,开发出用于推断荧光基板上的印刷油墨厚度变化的模型。实验证明了结论的正确性。

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