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On the physical origin of conical bubble structure under an ultrasonic horn
Authors:Bertrand Dubus  Christian Vanhille  Cleofé Campos-Pozuelo  Christian Granger
Affiliation:1. Institut d’Electronique de Microélectronique et de Nanotechnologie, département ISEN, UMR CNRS 8520, 41 boulevard Vauban, 59046 Lille cedex, France;2. ESCET, Universidad Rey Juan Carlos, Tulipán s/n., 28933 Móstoles (Madrid), Spain;3. Instituto de Acústica, CSIC, Serrano 144, 28006 Madrid, Spain
Abstract:The cavitation field generated by an ultrasonic horn at low frequency and high power is known to self-organize into a conical bubble structure. The physical mechanism at the origin of this bubble structure is investigated using numerical simulations and acoustic pressure measurements. The thin bubbly layer lying at horn surface is shown to act as a nonlinear thickness resonator that amplifies acoustic pressure and distorts acoustic waveform. This mechanism explains the self-stabilization of the conical bubble structure as well as the generation of shock wave and the focusing at very short distance.
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