OPTIMIZATION OF COLOR PERCEPTION PROCESS IN THE PRINT PRODUCT BY THE STEEP CLIMBING METHOD BY BOX-WILSON

U. Eshbaeva, I. Shin, A. Djalilov
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Abstract

In the article is discussed the optimization of color perception process of printed products by the method of steep climbing in Box-Wilson. There are presented results of experiment planning and statistical modeling of the process of color perception with the offset printing method on paper, including synthetic polymers. It is presented a mathematical model of the color perception by the Box-Wilson steep ascent method, it is achieved the optimum range for the response function in the form of the paint layer thickness depending on the pressing force (pressure), the pressing process speed and paper smoothness. As a result, on the basis of the obtained color perception model, optimal parameters were established, which allow to hold objective assessment and prediction of the color perception of the printed materials. The results of the study are the basis for the rational determination of the compositional composition of the experimental paper in its design and development of both paper and printing products.
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用box-wilson的陡峭爬坡法优化印刷品的色彩感知过程
本文讨论了Box-Wilson中陡坡爬坡法对印刷品色彩感知过程的优化。介绍了胶印方法在纸上(包括合成聚合物)的色彩感知过程的实验计划和统计建模结果。采用Box-Wilson陡坡上升法建立了色彩感知的数学模型,得到了以涂料层厚度形式表示的响应函数的最优范围,该响应函数取决于压紧力(压力)、压紧过程速度和纸张平滑度。在得到的颜色感知模型的基础上,建立了最优参数,对印刷品的颜色感知进行了客观的评价和预测。研究结果为纸张和印刷产品的设计和开发中合理确定实验纸的组成成分提供了依据。
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