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The Correlation of Macro Print Mottle to Surface Topography as Measured by an Optical Surface Topography System

机译:光学表面形貌系统测量的宏观印刷斑点与表面形貌的相关性

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A group of coated and uncoated printing grade papers was tested on a new instrument that displays and objectively quantifies the surface topography of paper and board. The numeric ranking from the instrument was then correlated to the quality of the print produced on offset and rotogravure presses using an objective print mottle measurement and, for coated board, with expert evaluators. Images generated by the topographic instrument are presented for visual comparison of the surfaces studied. This new instrument, can measure, in one action taking less than 30 seconds, the topography in areas as large as 200 mm x 200 mm. In the experiments conducted on coated board the entire area was measured as a unit. In the print trials the instrument software enabled the large imaged area to be sub-divided to measure and report the unprinted surface topography separate from the mottle measurement in the printed areas. It is demonstrated that the Verity-Topo instrument can emulate the human in visual printing surface evaluation and holds a great potential to objectively predict the quality of print based upon surface topography measurements. The methodology tested and described in this paper is applicable to any surface destined to receive a printed image using a contact printing method and may have application to non-contact print.
机译:一组涂布和未涂布的印刷级纸在新仪器上进行了测试,该仪器可以显示并客观地定量纸张和纸板的表面形貌。然后,使用客观的印刷斑点测量方法(对于涂板,使用专家评估器),将仪器的数字等级与胶印和轮转凹版印刷机上印刷的印刷质量相关联。呈现了由地形仪器生成的图像,以便对所研究的表面进行视觉比较。这款新仪器可以在不到30秒的时间内完成一次动作,可测量200 mm x 200 mm大区域的形貌。在涂覆板上进行的实验中,整个面积作为一个单位进行测量。在印刷试验中,仪器软件可以对较大的成像区域进行细分,以测量和报告未印刷的表面形貌,并与印刷区域中的斑点测量分开。事实证明,Verity-Topo仪器可以在视觉印刷表面评估中模仿人类,并且具有很大的潜力,可以根据表面形貌测量结果客观地预测印刷质量。本文中测试和描述的方法适用于旨在使用接触式印刷方法接收印刷图像的任何表面,并且可能适用于非接触式印刷。

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