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Uniform pressing mechanism in large-area roll-to-roll nanoimprint lithography processoa mark
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Publication Year
2021-10-01
Publisher
MDPI
Citation
Applied Sciences (Switzerland), Vol.11
Keyword
Contact pressureHigh productivityNanoimprint lithographyRoll-to-roll processRoller bending
All Science Classification Codes (ASJC)
Materials Science (all)InstrumentationEngineering (all)Process Chemistry and TechnologyComputer Science ApplicationsFluid Flow and Transfer Processes
Abstract
We aimed to increase the processing area of the roll-to-roll (R2R) nanoimprint lithography (NIL) process for high productivity, using a long roller. It is common for a long roller to have bending deformation, geometric errors and misalignment. This causes the non-uniformity of contact pressure between the rollers, which leads to defects such as non-uniform patterning. The non-uniformity of the contact pressure of the conventional R2R NIL system was investigated through finite element (FE) analysis and experiments in the conventional system. To solve the problem, a new large-area R2R NIL uniform pressing system with five multi-backup rollers was proposed and manufactured instead of the conventional system. As a preliminary experiment, the possibility of uniform contact pressure was confirmed by using only the pressure at both ends and one backup roller in the center. A more even contact pressure was achieved by using all five backup rollers and applying an appropriate pushing force to each backup roller. Machine learning techniques were applied to find the optimal combination of the pushing forces. In the conventional pressing process, it was confirmed that pressure deviation of the contact area occurred at a level of 44%; when the improved system was applied, pressure deviation dropped to 5%.
ISSN
2076-3417
Language
eng
URI
https://dspace.ajou.ac.kr/dev/handle/2018.oak/32318
DOI
https://doi.org/10.3390/app11209571
Fulltext

Type
Article
Funding
Funding: This study is based on work supported by the Ministry of Trade, Industry, and Energy (MOTIE, Korea) under the Industrial Technology Innovation Programs (No. 20000665, No. N0002310); the National Research Foundation of Korea (NRF) funded by the Korean government (No. 2021M3H4A3A01050374, No. 2020M3H4A3106319).
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Jeon, Yongho  Image
Jeon, Yongho 전용호
Department of Mechanical Engineering
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