空化
超声波传感器
材料科学
微流控
微通道
声流
气泡
超声波
合并(版本控制)
纳米技术
声学
机械
物理
情报检索
计算机科学
作者
Zibo Ren,Peng Xu,Huan Han,Claus‐Dieter Ohl,Zhigang Zuo,Shuhong Liu
标识
DOI:10.1016/j.ultsonch.2024.107011
摘要
Surface-attached micro- and nanobubbles are known for their resistance to external forces. This study experimentally and theoretically investigates their response to strong ultrasonic fields. Surface-attached micro- and nanobubbles with contact radii from 2 μm to 20 μm are generated in a microchannel and exposed to ultrasound through a vibrating glass substrate. At a driving frequency over 200 kHz up to 2 MHz tested, no significant response from the micro- and nanobubbles is observed. By contrast, at 100 kHz–200 kHz, ultrasonic cavitation bubbles appear in the microchannel and migrate toward the surface micro- and nanobubbles. Then the surface micro- and nanobubbles merge with the ultrasonic cavitation bubbles, detach from the substrate, and become free gaseous nuclei susceptible to further cavitation. Notably, the removal process leaves no observable residue. Theoretical analysis suggests that the directional migration of cavitation bubbles is driven by mutual acoustic radiation forces. This work demonstrates that ultrasonic fields can effectively remove surface micro- and nanobubbles, transforming them into free gaseous cavitation nuclei.
科研通智能强力驱动
Strongly Powered by AbleSci AI