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Printing with light: daylight-fluorescent inks for large-gamut multi-color printing

机译:光印刷:日光荧光油墨,用于大范围多色印刷

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With printing technologies continuously reaching ever higher degrees of performance and quality, the need for novelty and impact and also keeps increasing. Specialty inks have always played an important role here, albeit not without challenges. Often the use of such materials involved dedicated solutions that deal with these inks outside of the constraints of normal pipelines and workflows, which constrains their application and results in limited use. This is so since specialty inks. such as fluorescents. behave differently to traditional dye or pigment-based ones So much so that most applications use specialty inks as spot colors, explicitly determining (by means of a separate layer in the input) where they are to be used for given content. For example, for materials such as fluorescents or quantum dots, the possibility of presenting more light at a given wavelength than is incident at that wavelength, breaks some of the basic assumptions of current processes, from how they are measured to how they can be used in building color separations all the way to how color management deals with them. In this paper we describe first experiments of using fluorescent inks that are activated by visible - instead of the more customary UV - radiation, showing performance of spectrophotometer measurement with a dedicated model to handle the specific properties of these inks, as well as results of the impact such inks can have on extending color gamuts that go significantly beyond current printing gamuts and therefore also pose new challenges.
机译:随着打印技术不断达到更高的性能和质量水平,对新颖性和影响的需求也在不断增加。尽管并非没有挑战,但特种油墨一直在这里起着重要的作用。通常,此类材料的使用涉及专用解决方案,这些解决方案在正常管道和工作流程的约束之外处理这些油墨,这限制了它们的应用并导致使用受限。既然是特种油墨,那就是如此。例如荧光灯。其行为与传统的染料或颜料基染料不同,以至于大多数应用程序将特种油墨用作专色,从而明确确定(通过输入中的单独层)用于给定内容的位置。例如,对于诸如荧光粉或量子点之类的材料,在给定波长处呈现比在该波长处入射的光更多的可能性,打破了当前过程的一些基本假设,从如何测量到如何使用它们。建立颜色分离的过程一直到颜色管理如何处理它们。在本文中,我们描述了使用可见光(而不是更常见的紫外线)激活的荧光墨水的第一个实验,展示了使用专用模型处理这些墨水的特定特性的分光光度计测量的性能以及其结果。这种油墨对扩展色域的影响可能远远超出当前的印刷色域,因此也带来了新的挑战。

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