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Gravure Printing of Conductive Inks on Glass Substrates for Applications in Printed Electronics

机译:用于印刷电子产品的玻璃基板上的导电油墨的凹版印刷

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摘要

In graphics, gravure printing is the preferred method for printing high quality, fine dimension graphics using high-speed roll-to-roll or sheet fed presses. Gravure printing typically employs flexible and compressible substrates such as various papers and polymer films. In electronics, glass substrates are a common, if not preferred, substrate in many applications, particularly displays and photovoltaics. In combining printing with glass substrates, challenges exist in adapting contact-based printing methods such as gravure to the mechanical properties of the more rigid substrates. In this work, sheet-fed gravure printing has been successfully used to print silver-based conductive inks on glass substrates. Various features were designed and printed to evaluate conductive layers in terms of their printability and electrical performance. The independent variables include gravure cell dimensions, trace orientation with respect to printing direction and ink type. Results from this work provide an insight into the science of gravure printing on glass by correlating the independent variables to printed feature quality and electrical performance.
机译:在图形中,凹版印刷是使用高速卷对卷或单张纸印刷机印刷高质量,精细尺寸图形的首选方法。凹版印刷通常使用柔性且可压缩的基材,例如各种纸张和聚合物薄膜。在电子产品中,玻璃基板是许多应用中的通用(如果不是优选的话)基板,尤其是显示器和光电。在将印刷与玻璃基板结合时,在使基于接触的印刷方法(例如凹版印刷)适应更刚性的基板的机械性能方面存在挑战。在这项工作中,单张纸凹版印刷已成功用于在玻璃基板上印刷银基导电油墨。设计并印刷了各种功能部件,以评估导电层的可印刷性和电气性能。独立变量包括凹版印刷机尺寸,相对于印刷方向的迹线方向和油墨类型。这项工作的结果通过将自变量与印刷特征质量和电气性能相关联,提供了对玻璃凹版印刷科学的深入了解。

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