Optimization of supersonic nozzle flow for titanium dioxide thin-film coating by aerosol deposition

  • Lee, M. W.
  • Park, J. J.
  • Kim, D. Y.
  • Yoon, S. S.
  • Kim, H. Y.
  • 외 7명
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초록

Aerosol deposition (AD) is an efficient technique for customized coating of various substrates. The small particles of AD yield a dense coating layer with small voids. AD is amenable to rapid coating (mass production), thus, it is economically attractive. Low-temperature AD coating is desirable because it minimizes the thermal degradation of the substrate. An optimized low-cost AD coating technique is of significant interest to solar-cell engineers seeking to reduce manufacturing costs. While most previous studies ignore the importance of nozzle geometry on coating performance, this paper examines non-optimized nozzles and commensurate shockwaves using computational fluid dynamics (CFD). The optimized nozzle geometry obtained from CFD can rapidly prototype nozzles. The CFD-designed nozzles with optimized geometry yielded significantly improved coating quality over non-optimized nozzles. (C) 2011 Elsevier Ltd. All rights reserved.

키워드

Aerosol depositionSupersonic nozzle flowShockwaveNozzle optimizationComputational fluid dynamicsDYNAMIC SPRAY PROCESSCOLD SPRAYPARTICLE-VELOCITYROOM-TEMPERATURENUMERICAL-SIMULATIONOPTIMAL-DESIGNMECHANISMPOWDERJET
제목
Optimization of supersonic nozzle flow for titanium dioxide thin-film coating by aerosol deposition
저자
Lee, M. W.Park, J. J.Kim, D. Y.Yoon, S. S.Kim, H. Y.Kim, D. H.James, S. C.Chandra, S.Coyle, ThomasRyu, J. H.Yoon, W. H.Park, D. S.
DOI
10.1016/j.jaerosci.2011.07.006
발행일
2011-11
유형
Article
저널명
Journal of Aerosol Science
42
11
페이지
771 ~ 780