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声子晶体波导对空气中颗粒的声分选。

Acoustic sorting of airborne particles by a phononic crystal waveguide.

机构信息

Department of Nanoscience and Nanotechnology, Burdur Mehmet Akif Ersoy University, Burdur, Turkey.

Opticianry Programme, Gölhisar Vocational School of Health Services, Burdur Mehmet Akif Ersoy University, Burdur, Turkey.

出版信息

Ultrasonics. 2022 Aug;124:106777. doi: 10.1016/j.ultras.2022.106777. Epub 2022 May 30.

Abstract

A two-dimensional phononic crystal linear defect waveguide is utilized for size-based sorting of millimeter-sized solid particles in the air through acoustic radiation force. The waveguide channels ultrasonic waves at 20 kHz, as calculated through Finite-Element Method simulations. Spherical solid particles released from rest at the top of the vertically aligned waveguide experience the combined effect of the acoustic radiation, gravity, and drag forces. When the particles are released from the symmetry plane of the waveguide, they follow straight paths where the ones with radii smaller than a threshold value are trapped at the waveguide nodal planes, whereas larger particles are let pass through. This requires input sound pressure levels between 173 dB and 177 dB. Moreover, such particles can also be differentiated with respect to density. Alternatively, the release of particles with a slight offset from the symmetry center induces unbalanced acoustic radiation potential, and thus uneven radiation force, resulting in the initiation of horizontal displacement whose extent depends on particle radius. Thus, both simulation results and experimental findings suggest that this scheme can be employed in size-based particle separation. Sorting of spherical glass particles with 0.5 mm and 1.0 mm radii are experimentally demonstrated for low ultrasonic transducer acoustic power output up to 90 W. The proposed approach can be utilized in applications where contact-free separation of airborne particles is required.

摘要

利用二维声子晶体线性缺陷波导,通过声辐射力对空气中毫米级固体颗粒进行基于尺寸的分选。通过有限元法模拟计算,波导通道传输 20 kHz 的超声波。从垂直排列波导顶部静止释放的球形固体颗粒会受到声辐射、重力和阻力的共同作用。当颗粒从波导的对称面释放时,它们会沿着直线运动,半径小于阈值的颗粒会被捕获在波导节面处,而较大的颗粒则会通过。这需要输入声压级在 173 dB 到 177 dB 之间。此外,还可以根据密度对这些颗粒进行区分。或者,从对称中心略微偏移释放颗粒会引起不平衡的声辐射势,从而产生不均匀的辐射力,导致水平位移的产生,其程度取决于颗粒半径。因此,模拟结果和实验结果均表明,该方案可用于基于尺寸的颗粒分离。实验演示了使用低超声换能器声功率输出高达 90 W 对 0.5 mm 和 1.0 mm 半径的球形玻璃颗粒进行分选。该方法可用于需要非接触式分离空气传播颗粒的应用中。

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