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"Screen mask"

Effects of Process Conditions on Electrode Patterning by Screen Printing Method
Na-young Lee, Dong-chul Kim, Dong-hun Yeo, Joo-sung Lee, Sang Ok Yoon, Hyo-soon Shin, Joon-hyung Lee
J Electr Electron Mater 2020;33(5):355-359.   Published online September 1, 2020
DOI: https://doi.org/10.4313/JKEM.2021.33.5.4
In this study, image analysis and surface roughness measurements using an optical microscope are presented as a method to quantitatively evaluate the results of screen printing. Using this method, the squeegee speed, which is the printing process condition, and the printability of the electrode according to the screen mesh were evaluated. Increasing the squeegee speed in the printing process acts as a process element that increases the line width precision of the printed electrode and lowers the surface roughness of the printed surface. Furthermore, the edge roughness, which indicates the clarity of printing, was not significantly affected by the speed of the squeegee during printing. The print thickness increases in proportion to the squeegee speed, but is largely dependent on the screen thickness.
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