超音波水流に基づく洗浄
Author:
Affiliation:
1. 慶應義塾大学理工学部機械工学科
Publisher
The Japanese Society for Multiphase Flow
Subject
Psychiatry and Mental health
Link
https://www.jstage.jst.go.jp/article/jjmf/37/2/37_2023.T005/_pdf
Reference17 articles.
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2. [2] Kondo, T. and Ando, K., Simulation of High-Speed Droplet Impact Against a Dry/Wet Rigid Wall for Understanding the Mechanism of Liquid Jet Cleaning, Phys. Fluids, Vol. 31, 013303 (2019).
3. [3] Kim, W., Kim, T.H., Choi, H. and Kim, H.Y., Mechanism of Particle Removal by Megasonic Waves. Appl. Phys. Lett., Vol. 94, 081908 (2009).
4. [4] Hauptmann, M, Brems, S., Camerotto, E., Zijlstra, A., Doumen, G., Bearda, T., Mertens, P.W. and Lauriks, W., Influence of Gasification on the Performance of a 1 MHz Nozzle System in Mega-sonic Cleaning, Microelectron. Eng., Vol. 87, 1512-1515 (2010).
5. [5] Usui, H., Ishibashi, T., Matsuo, H., Watanabe, K. and Ando, K., Visualization of Acoustic Waves and Cavitation in Ultrasonic Water Flow, Solid State Phenom., Vol. 314, 186-191 (2021).
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