DocumentCode :
3336418
Title :
Modification of Surface Properties for Industrial Ink-jet Printing
Author :
Sang-Ho Lee ; Kwon-Yong Shin ; Jun Young Hwang ; Kyungtae Kang ; Gyu-Bong Lee
Author_Institution :
Korea Inst. of Ind. Technol., Ansan
fYear :
2008
fDate :
9-11 April 2008
Firstpage :
367
Lastpage :
370
Abstract :
characteristics of silver inkjet printing were intensively investigated under control of surface energy and substrate temperature. A fluorocarbon (FC) film was spincoated on a polyimide (PI) substrate to obtain a hydrophobic surface, and an ultraviolet (UV)/ozone (O3) treatment was performed to control surface wettability of the FC film surface. To characterize the surface changes, we performed measurements of the static and dynamic contact angles and calculated surface energy by Wu´s harmonic mean model. In silver inkjet printing, the hydrophobic FC film could reduce the diameter of the printed droplets. Merging of deposited droplets was observed when the substrate was kept at room temperature. Substrate heating was effective in preventing the merging phenomenon among the deposited droplets, and in reducing the width of printed lines. The merging phenomenon of deposited droplets was prevented also by increasing the UV/O3 treatment time.
Keywords :
electronics industry; heating; ink jet printers; printing; spin coating; surface energy; wetting; deposited droplets; fluorocarbon film; hydrophobic surface; hydrophobicity; industrial ink-jet printing; silver inkjet printing; spincoatings; substrate temperature; surface energy; surface properties modification; surface wettability; ultraviolet treatment; Energy measurement; Industrial control; Ink jet printing; Merging; Performance evaluation; Polyimides; Silver; Substrates; Surface treatment; Temperature control; Ink-jet; UV/O3 treatment; hydrophobic coating; silver ink; substrate heating;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Smart Manufacturing Application, 2008. ICSMA 2008. International Conference on
Conference_Location :
Gyeonggi-do
Print_ISBN :
978-89-950038-8-6
Electronic_ISBN :
978-89-962150-0-4
Type :
conf
DOI :
10.1109/ICSMA.2008.4505554
Filename :
4505554
Link To Document :
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