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2019 | OriginalPaper | Chapter

Investigation on Acoustic Streaming During Ultrasonic Irradiation in Aluminum Melts

Authors : Takuya Yamamoto, Sergey Komarov

Published in: Light Metals 2019

Publisher: Springer International Publishing

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Abstract

Acoustic streaming is a key factor in ultrasonic casting of aluminum alloys because it determines heat and mass transfer, and thus affects the temperature distribution, solidification phenomena, solute transport and crystal growth. However, measurement and prediction of acoustic streaming in molten aluminum present a big challenge due to high temperatures and acoustic streaming complexity. In this work, a numerical model has been developed to simulate acoustic streaming in molten aluminum. The model allows predicting generation of cavitation bubbles, sound wave propagation and attenuation due to interaction with the bubbles, and fluid flow. The model validation has been performed by comparing the predicted and measured acoustic streaming in water. Good agreement between these results suggests that the model can be used to predict acoustic streaming in actual casting processes. However, a number of issues still remain to be solved particularly an accurate simulation of bubble oscillations.

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Literature
1.
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2.
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3.
go back to reference L. K. Zarembo, “Acoustic Streaming”, High-Intensity Ultrasonic Fields, ed. L.D. Rozenberg, Plenum, New York, 1977, Part III, pp 156–164. L. K. Zarembo, “Acoustic Streaming”, High-Intensity Ultrasonic Fields, ed. L.D. Rozenberg, Plenum, New York, 1977, Part III, pp 156–164.
4.
go back to reference Y. Fang, T. Yamamoto, S. Komarov, Cavitation and acoustic streaming generated by different sonotrode tips, Ultrason. Sonochem. 48 (2018) 79–87. Y. Fang, T. Yamamoto, S. Komarov, Cavitation and acoustic streaming generated by different sonotrode tips, Ultrason. Sonochem. 48 (2018) 79–87.
5.
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Metadata
Title
Investigation on Acoustic Streaming During Ultrasonic Irradiation in Aluminum Melts
Authors
Takuya Yamamoto
Sergey Komarov
Copyright Year
2019
DOI
https://doi.org/10.1007/978-3-030-05864-7_192

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