DocumentCode :
2355536
Title :
P2L-3 Effects of Sound Field and Acoustic Streaming on Nanometer Sized Diamond Particles Dispersion System using Ultrasound
Author :
Kawashima, Norimichi ; Takeuchi, Shinichi ; Kawashima, Naohiro ; Kikuchi, Tsuneo
Author_Institution :
AIST, NMIJ, Tsukuba
fYear :
2006
fDate :
2-6 Oct. 2006
Firstpage :
1836
Lastpage :
1839
Abstract :
We reported the improvement of dispersion of nanometer sized diamond particles using shock wave and active oxygen species by acoustic cavitation at 155 kHz in 2004 IEEE International UFFC Joint 50th Anniversary Conference in Montreal. Average sound pressure calculated from sound pressure distribution in horizontal plane at distance of 10 mm from a stainless steel vibrating disk in water tank was used as acoustic index for improvement of dispersion of the diamond particles. The measured horizontal plane was on the loop of the standing wave acoustic field. However, improvement of dispersion characteristics of the particles was performed in whole water in the water tank. Therefore, each sound pressure distribution in horizontal plane at the distances of 10 mm to 95 mm from the stainless steel vibrating disk was measured by hydrophone. Sound pressure distribution all over water in the water tank was observed three dimensionally. The generation of active oxygen species in the water tank was estimated by observation of sonochemical luminescence. As the results, higher sound pressure than 100 kPa was measured in central region lower than height of 55 mm from the stainless steel vibrating disk in the water tank. Sonochemical luminescence could not be observed in above region in the water tank. They were contradictory results. We guess that the acoustic streaming prevents from trapping cavitation bubble at the loop of standing wave sound field. We think that the acoustic streaming is one cause of the contradictory results. Homogenous sound pressure distribution is required improvement of dispersion characteristics of nanometer sized diamond particles by ultrasound exposure
Keywords :
acoustic dispersion; acoustic field; acoustic streaming; cavitation; diamond; nanoparticles; nonlinear acoustics; 155 kHz; acoustic cavitation; acoustic streaming; cavitation bubble trapping; dispersion system; nanometer sized diamond particles; shock wave; sonochemical luminescence; sound field; sound pressure distribution; stainless steel vibrating disk; standing wave acoustic field; surface modification; ultrasound; Acoustic measurements; Acoustic waves; Dispersion; Luminescence; Pressure measurement; Shock waves; Steel; Ultrasonic imaging; Vibration measurement; Water;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Ultrasonics Symposium, 2006. IEEE
Conference_Location :
Vancouver, BC
ISSN :
1051-0117
Print_ISBN :
1-4244-0201-8
Electronic_ISBN :
1051-0117
Type :
conf
DOI :
10.1109/ULTSYM.2006.462
Filename :
4152318
Link To Document :
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