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Motion of Heavy Particles on a Submerged Chladni Plate

机译:重粒子在淹没的chladni板上的运动

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摘要

Heavy particles are traditionally believed to gather at the nodes of a resonating plate, forming standard Chladni patterns. Here, for the first time, we experimentally show that heavy particles, i.e., sub-mm particles, can move towards the antinodes of a resonating plate. By submerging the resonating plate inside a fluidic medium, the acoustic radiation force and the lateral effective weight become dominant at the sub-mm scale. Those forces, averaged over a vibration cycle, move the particles towards the antinodes and generate sophisticated patterns. We create a statistical model that relates the complex motion of particles to their locations and plate vibration frequencies in a wide spectrum of both resonant and nonresonant frequencies. Additionally, we employ our model to control the motion of single particles and a swarm of particles on the submerged plate. Our device can move particles with sufficient power at an exceptionally wide frequency range, potentially opening a path to new particle manipulation techniques at sub-mm scale in fluidic media.
机译:传统上据信重粒子在谐振板的节点上聚集,形成标准的Chladni图案。在此,我们首次示出了重粒子,即亚mm颗粒可以朝向谐振板的抗氨基。通过在流体介质内浸没谐振板,声辐射力和横向有效重量在亚mm标尺处成为主导。在振动循环上平均的那些力将颗粒朝向抗肌瘤移动并产生复杂的图案。我们创建了一种统计模型,其将粒子的复杂运动与它们的位置和板振动频率相关,并且在谐振和非统治频率的宽频谱中。此外,我们采用我们的模型来控制单个颗粒的运动和浸没板上的颗粒的运动。我们的装置可以在异常宽的频率范围内移动具有足够功率的粒子,可能在流体介质中的亚mm刻度下的新粒子操纵技术的路径。

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  • 来源
    《Physical review letters》 |2019年第18期|184301.1-184301.5|共5页
  • 作者单位

    Aalto Univ Dept Elect Engn & Automat Espoo 02150 Finland;

    Aalto Univ Dept Elect Engn & Automat Espoo 02150 Finland;

    Aalto Univ Dept Elect Engn & Automat Espoo 02150 Finland;

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