论文标题
主动球载体的声学转向
Acoustic Steering of Active Spherical Carriers
论文作者
论文摘要
在小说引入了活动载体的概念之后,本文提出了一种具有内部压电的活性球形载体的技术,该载体受到了渐进的声学平面波,作为处理非接触式资产。假定活动载体的压电部分可以用作双截面体(即两个连续的半球形部分),具有规定的相位差,并且可以改变假想平面的极性位置。这个问题带来了问题的动力学中的不对称性,从而导致位置/频率依赖性声辐射扭矩的出现。可以获得由于载体通过具有相同振幅和$π$ -Radians相位差的谐波电压而激发的,因此,对于特定的振幅和电压相位,获得了零辐射力的情况,则获得了频率的函数。这种情况被视为确定操作电压最佳振幅的标准。结果表明,假设入射波场的固定方向,可以沿任何所需的方向对激活载体上施加的净力的方向进行操纵。分裂平面空间位置的激发和可控性的解释方法可能是主动载体的声学处理的突破。明显的是,通过这项新技术,单光束声音的无接触式方法及其与活动载体概念相关的应用现在已经向前迈进了一步。
Following the novel introduced concept of the active carriers, this paper brings forward a technique toward the manipulability of an internally piezo-equipped active spherical carrier subjected to the progressive acoustic plane waves as the handling contactless asset. It is assumed that the piezoelectric part of the active carrier may be actuated as a bi-sectional body (i.e., two continuous hemispherical parts), with prescribed phase difference, and the polar position of the imaginary separating plane may be altered. This issue brings about an asymmetry in the dynamics of the problem which leads to emergence of position/frequency dependent acoustic radiation torque. It is obtained that as the carrier is excited by imposing harmonic voltage with the same amplitude and a $π$-radians phase difference,the zero-radiation force situation is obtained for a specific amplitude and phase of voltage as a function of frequency. This situation is treated as a criterion to determine the optimal amplitude of operation voltage. It is shown that the net force's direction exerted on the activated carrier may be steered along any desired orientation, assuming the fixed direction of the incident wave field. The explained method of excitation and controllability of the spatial position of the divisor plane can possibly be a breakthrough in acoustic handling of active carriers. Noticeably, by this new technique, the single beam acoustic based contact-free methods and their applications in association with the concept of active carriers are now one step forward.