CFD를 이용한 슬롯 다이 헤드 내부의 유체 분포 분석

Study on Fluid Distribution in Slot-die Head Using CFD

  • 유수호 (한국기술교육대학교 전기.전자.통신공학부) ;
  • 김기은 (한국기술교육대학교 전기.전자.통신공학부) ;
  • 신영균 (한국기술교육대학교 전기.전자.통신공학부) ;
  • 박종운 (한국기술교육대학교 전기.전자.통신공학부)
  • Yoo, Suho (School of Electrical, Electronic & Communication Engineering, Korea University of Technology and Education) ;
  • Kim, Gieun (School of Electrical, Electronic & Communication Engineering, Korea University of Technology and Education) ;
  • Shin, Youngkyun (School of Electrical, Electronic & Communication Engineering, Korea University of Technology and Education) ;
  • Park, Jongwoon (School of Electrical, Electronic & Communication Engineering, Korea University of Technology and Education)
  • 투고 : 2022.11.02
  • 심사 : 2022.12.12
  • 발행 : 2022.12.31

초록

Using a CFD (computational fluid dynamics) simulation tool, we have offered a design guideline of a slot-die head having a simple T-shaped cavity through an analysis of the fluid dynamics in terms of cavity pressure and outlet velocity, which affect the uniformity of coated thin films. We have visualized the fluid flow with a transparent slot-die head where poly(3,4-ethylenedioxythiophene):poly(4-styrenesulfonate) (PEDOT:PSS) is injected. We have shown that the fluid dynamics inside the slot-die head depends sensitively on the cavity depth, cavity length, land length, and channel gap (i.e., shim thickness). Of those, the channel gap is the most critical parameter that determines the uniformity of the pressure and velocity distributions. A pressure drop inside the cavity is shown to be reduced with decreasing shim thickness. To quantify it, we have also calculated the coefficient of variation (CV). In accordance with Hagen-Poiseuille's laws and electron-hydraulic analogy, the CV value is decreased with increasing cavity depth, cavity length, and land length.

키워드

과제정보

이 논문은 2022년도 한국기술교육대학교 교수 교육연구진흥과제 지원에 의하여 연구되었음.

참고문헌

  1. Xiongwen Zhang "Thermal Analysis of a Cylindrical Lithi-um-ion Battery", Journal of Electrochemical Acta 56, pp.1246-1255, 2011. https://doi.org/10.1016/j.electacta.2010.10.054
  2. Z. Qiao, Z. Wang, C. Zhang, S. Yuan, Y. Zhu, and J. Wang, "A Review of the Operating Limits in Slot Die Coating Processes," AIChE Journal, vol. 59, no. 4, pp. 215-228, 2012, doi: 10.1002/aic.15268.
  3. L. Jiang, L. Yu, P. Premaratne, Z. Zhang, and H. Qin, "CFD-based numerical modeling to predict the dimensions of printed droplets in electrohydrodynamic inkjet printing," J Manuf Process, vol. 66, pp. 125-132, Jun. 2021, doi: 10.1016/j.jmapro.2021.04.003.
  4. A. Hoffmann, S. Spiegel, T. Heckmann, P. Scharfer, and W. Schabel, "CFD model of slot die coating for lithium-ion battery electrodes in 2D and 3D with load balanced dynamic mesh refinement enabled with a local-slip boundary condition in OpenFOAM," J Coat Technol Res, 2022, doi: 10.1007/s11998-022-00660-8.
  5. J. Kim, J. Lee, D. Shin, and J. Park, "Fabrication of Fine Organic Thin-Film Stripes Using a Hydrophobic Needle," Journal of the Semiconductor & Display Technology, vol. 19, no. 1, pp. 73-78, 2020.
  6. J. Jensen, H. F. Dam, J. R. Reynolds, A. L. Dyer, and F. C. Krebs, "Manufacture and demonstration of organic photovoltaic-powered electrochromic displays using roll coating methods and printable electrolytes," J Polym Sci B Polym Phys, vol. 50, no. 8, pp. 536-545, 2012, doi: 10.1002/polb.23038.
  7. K. B. Hatzell and Y. Zheng, "Prospects on large-scale manufacturing of solid state batteries," MRS Energy and Sustainability, vol. 8, no. 1, pp. 33-39, 2021, doi: 10.1557/s43581-021-00004-w.
  8. Z. Yang, H. Peng, W. Wang, and T. Liu, "Optimal geometry design of the coat-hanger die with uniform outlet velocity and minimal residence time," J Appl Polym Sci, vol. 116, no. 5, pp. 2658-2667, 2010, doi: 10.1002/APP.34827.
  9. B. C. Lee, B. M. Park, and K. Y. Han, "Optimal Slit Nozzle Design for Uniformity Coating in Display Module Lamination," Molecular Crystals and Liquid Crystals, vol. 677, no. 1, pp. 42-53, 2018, doi: 10.1080/15421406.2019.1597510.
  10. N. A. Mortensen, F. Okkels, and H. Bruus, "Reexamination of Hagen-Poiseuille flow: Shape dependence of the hydraulic resistance in microchannels," Phys Rev E Stat Nonlin Soft Matter Phys, vol. 71, no. 5, May 2005, doi: 10.1103/PhysRevE.71.057301.
  11. D. Shin, J. Lee, and J. Park, "Effect of slit channel width of a shim embedded in slot-die head on high-density stripe coating for OLEDs," Coatings, vol. 10, no. 8, Aug. 2020, doi: 10.3390/COATINGS10080772.