The near-field acoustic levitation of high-mass rotors
Zhenyu Hong, Peng Lü, D. L. Geng, W. Zhai, N. Yan, B. Wei
Abstract
Zhenyu Hong, Peng Lü, D. L. Geng, W. Zhai, N. Yan, B. Wei
Abstract
Here we demonstrate that spherical rotors with 40 mm diameter and 0-1 kg mass can be suspended more than tens of micrometers away from an ultrasonically vibrating concave surface by near-field acoustic radiation force. Their rotating speeds exceed 3000 rpm. An acoustic model has been developed to evaluate the near-field acoustic radiation force and the resonant frequencies of levitation system. This technique has potential application in developing acoustic gyroscope.
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Here we demonstrate that spherical rotors with 40 mm diameter and 0-1 kg mass can be suspended more than tens of micrometers away from an ultrasonically vibrating concave surface by near-field acoustic radiation force. Their rotating speeds exceed 3000 rpm. An acoustic model has been developed to evaluate the near-field acoustic radiation force and the resonant frequencies of levitation system. This technique has potential application in developing acoustic gyroscope.
Key concepts: Acoustic levitation, Levitation, Acoustic radiation force, Acoustic radiation, Acoustics, Gyroscope, Materials science, Physics