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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
WEB OF SCIENCE
79SCOPUS
85초록
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
- 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, Thomas; Ryu, J. H.; Yoon, W. H.; Park, D. S.
- 발행일
- 2011-11
- 유형
- Article
- 권
- 42
- 호
- 11
- 페이지
- 771 ~ 780