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Dynamic Superposition and Levitation Capability of Two Confronting Ultrasonic Waves

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【作者】 闫娜邸文丽洪振宇解文军魏炳波

【Author】 Na Yan;Wen-Li Di;Zhen-Yu Hong;Wen-Jun Xie;Bing-Bo Wei;Department of Applied Physics, Northwestern Polytechnical University;

【通讯作者】 魏炳波;

【机构】 Department of Applied Physics, Northwestern Polytechnical University

【摘要】 The superposition dynamics of two confronting ultrasonic waves and their levitation capability for centimeter-sized thin disks are investigated by numerical analyses and validated by experiments. The sound pressure simulation reveals that two opposite ultrasonic waves provide a more effective standing-wave field than a single ultrasonic wave when the diameter of disk-shaped object approaches the wavelength scale. The dynamic superposition of two confronting beams facilitates the acoustic levitation of the clay disk and aluminum disk with diameters of 0.97 and 0.90. The acoustic radiation forces exerting on these thin disks are measured experimentally, which exhibit a better levitation stability for the centimeter-sized thin disks. The equilibrium levitation positions of the two disks are located near the sound pressure node, and the maximum acoustic radiation pressure on their surfaces is less than one percent of the maximum sound pressure.

【Abstract】 The superposition dynamics of two confronting ultrasonic waves and their levitation capability for centimeter-sized thin disks are investigated by numerical analyses and validated by experiments. The sound pressure simulation reveals that two opposite ultrasonic waves provide a more effective standing-wave field than a single ultrasonic wave when the diameter of disk-shaped object approaches the wavelength scale. The dynamic superposition of two confronting beams facilitates the acoustic levitation of the clay disk and aluminum disk with diameters of 0.97 and 0.90. The acoustic radiation forces exerting on these thin disks are measured experimentally, which exhibit a better levitation stability for the centimeter-sized thin disks. The equilibrium levitation positions of the two disks are located near the sound pressure node, and the maximum acoustic radiation pressure on their surfaces is less than one percent of the maximum sound pressure.

【关键词】 superpositionCapabilitysizeddiametersultrasonicvalidatedacousshapedoppositepositions
【基金】 Supported by the National Natural Science Foundation of China under Grant Nos 51871186 and 51771156
  • 【文献出处】 Chinese Physics Letters ,中国物理快报(英文版) , 编辑部邮箱 ,2019年03期
  • 【分类号】TB55
  • 【被引频次】1
  • 【下载频次】50
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