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Color-Managed 3D-Printing with highly Translucent Printing Materials

机译:使用高度透明的打印材料进行色彩管理的3D打印

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Many 3D printing applications require the reproduction of an object's color in addition to its shape. One 3D printing technology, called multi-jetting (or poly-jetting), allows full color 3D reproductions by arranging multiple colored materials (UV curing photo-polymers) on a droplet level in a single object. One property of such printing materials is their high translucency posing new challenges for characterizing such 3D printers to create ICC profiles. In this paper, we will first describe the whole color-managed 3D printing workflow and will then focus on measuring the colors of highly translucent printing materials. We will show that measurements made by spectrophotometers used in the graphic arts industry are systematically biased towards lower reflection. We will then propose a trichromatic camera-based approach for measuring such colors. Error rates obtained in comparison with spectroradiometric measurements for the same viewing conditions are within the interinstrument-variability of hand-held spectrophotometers used in graphic arts.
机译:许多3D打印应用程序除了需要其形状外,还需要复制其颜色。一种称为多喷射(或多喷射)的3D打印技术,通过将多个有色材料(紫外线固化光敏聚合物)排列在单个对象中的液滴水平上,可以实现全彩色3D复制。这种打印材料的一个特性是它们的高半透明性,给表征此类3D打印机以创建ICC配置文件提出了新的挑战。在本文中,我们将首先描述整个色彩管理的3D打印工作流程,然后将重点放在测量高度半透明的打印材料的颜色上。我们将显示图形艺术行业中使用的分光光度计进行的测量会系统地偏向于较低的反射率。然后,我们将提出一种基于三色相机的方法来测量此类颜色。在相同观察条件下,与分光光度法测量结果相比,获得的错误率在图形技术中使用的手持式分光光度计的仪器间可变性之内。

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