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Levitation and Control for an Ordered Group of Particles and Rectilinear Structures in an Ultrasonic Field

机译:超声波场中有序粒子和直线结构的悬浮和控制

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摘要

A method of control for an ordered group of particles that levitate in an ultrasonic field and structures of rectilinear segments is proposed. An ultrasonic field in air at a frequency of 40 kHz and particles whose dimensions are less than a quarter of a wavelength or thin cylindrical objects with diameters of less than a quarter of a wavelength are considered. The ultrasonic field is formed using four phased arrays of radiators that are placed oppositely on lateral faces of a rectangular parallelepiped. The radiators form a distribution of the standing wave field in the plane, which provides levitation of particles in a rectangular grid in a plane layer. With the use of numerical simulation and experimentally, it has been shown that the obtained distribution is stabilized and the particles remain immobile at local minimums of the Gor'kov potential. Moreover, regulation of the phase difference of opposite radiators provides controlled motion of a group of particles in a horizontal plane and a change in the focusing plane of side radiators provides controlled motion of a group of particles along the vertical plane. It has been shown experimentally that not only small particles but also structures assembled of rectilinear segments whose length is much greater than the wavelength can levitate in this field distribution.
机译:提出了一种控制在超声场中的有序颗粒组的控制方法,以及直线段的结构。考虑频率为40kHz的空气中的超声场,其尺寸小于波长或薄圆柱形物体的尺寸小于波长小于四分之一波长的薄圆柱对象。超声波场使用四个相位的散热器阵列形成,该辐射阵列相对地放置在矩形平行六面体的侧面上。散热器形成平面中的驻波场的分布,这在平面层中提供矩形栅格中的颗粒的悬浮。通过使用数值模拟和实验,已经证明了所获得的分布稳定,并且颗粒在Gor'kov电位的局部最小值处保持不动。此外,相反辐射器的相位差的调节提供了一组水平平面中的一组颗粒的受控运动,并且侧辐射器的聚焦面的变化提供了沿垂直平面的一组颗粒的受控运动。已经通过实验示出,不仅是小颗粒,而且还具有小颗粒,而且还包括由长度大于波长在该场分布中汲取的长度大的直线段的结构。

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