Investigation of Thermal-Insulation Properties of Nano-fiber Non-Woven Fabric by Computational Fluid Dynamics Model Consider Fiber Diameter Distribution
Author:
Affiliation:
1. M-TechX Inc. R&D Center
2. M-TechX Inc.
3. Doshisha University
Publisher
Society of Materials Science, Japan
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Link
https://www.jstage.jst.go.jp/article/jsms/72/8/72_613/_pdf
Reference29 articles.
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2. 2) R. Gineviˇcius, V. Podvezko, and S. Raslanas, “Evaluating the alternative solutions of wall insulation by multicriteria methods,” Journal of Civil Engineering and Management, Vol.14, Issue 4, pp. 217-226 (2008) .
3. 3) M. A. Donmez, M. H. Hahn, and J. A. Soons, “A novel cooling system to reduce thermally-induced errors of machine tools,” CIRP Annals, Vol.56, Issue 1, pp. 521-524 (2007) .
4. 4) M. Weck, P. Mckeown, R. Bonse, and U. Herbst, “Reduction and compensation of thermal inaccuracys in machine tools,” CIRP Annals, Vol.44, Issue 2, pp. 589-598, (1995) .
5. 5) T. Okazaki, K. Oikawa, S. Sakatani, and T. Kurashiki, “Study on the rigidity improvement of non-woven composite aerogel insulation material according to the non-woven fabric oriented design,” Transactions of the JSME, Vol.82, No.842, p. 16-00135 (2016) .
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