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一种使用双换能器支撑结构在二维声场中实现行波/驻波传输模式切换的方法。

A switching method for traveling/standing wave transportation modes in two-dimensional acoustic fields using a dual-transducer support structure.

作者信息

Mu Guanyu, Dong Huijuan, Sun Tong, Grattan Kenneth T V, Wu Zhiguang, Zhao Jie

机构信息

State Key Laboratory of Robotics and System, Harbin Institute of Technology, Harbin 150001, Heilongjiang Province, China.

State Key Laboratory of Robotics and System, Harbin Institute of Technology, Harbin 150001, Heilongjiang Province, China.

出版信息

Ultrason Sonochem. 2023 Dec;101:106724. doi: 10.1016/j.ultsonch.2023.106724. Epub 2023 Dec 9.

Abstract

The dual-transducer support structure discussed has the advantages of a simple structure and low cost, as well as allowing for the use of both Traveling-Wave (TW) and Standing-Wave (SW) acoustic transportation, supporting its use in pharmaceutical and biochemical analysis, for example. By adjusting the distance between the vibrating plate and the reflector which forms SW field in the y direction, the control of the position of the SW nodes or the TW component along the x direction allows the formation of a Two-Dimensional Standing Wave (2D-SW) or a Traveling Wave (TW) acoustic field, and these could be used for transportation in the x direction. It has been found that the x position of the SW nodes can be adjusted through changing the temporal phase shift, θ, which permits multiple objects to be transported using the 2D-SW mode. By comparison, TWs in the opposite direction could be generated at a pair of specific temporal phase shifts, allowing fast transportation using the TW mode. In this research work, an experiment has been carried out to transport polystyrene spheres using the two modes by programming the temporal phase shift, θ, this illustrating that precise position control of the multiple objects transported was possible using the 2D-SW mode, while high-speed transportation (up to 540 mm/s) was realized using the TW mode, showing that the dual-transducer support structure could be used effectively for accurate and fast transportation. As a fully non-contact method, the dual-transducer support structure can be seen to work in the 2D-SW mode for reaction synthesis or detection applications, and also in TW mode for rapid sample transportation applications.

摘要

所讨论的双换能器支撑结构具有结构简单、成本低的优点,并且允许同时使用行波(TW)和驻波(SW)声学传输方式,例如支持其在药物和生化分析中的应用。通过调整在y方向上形成驻波场的振动板与反射器之间的距离,控制驻波节点或行波分量沿x方向的位置,可以形成二维驻波(2D-SW)或行波(TW)声场,并且这些声场可用于在x方向上的传输。已经发现,可以通过改变时间相位偏移θ来调整驻波节点的x位置,这使得可以使用2D-SW模式传输多个物体。相比之下,在一对特定的时间相位偏移下可以产生相反方向的行波,从而允许使用行波模式进行快速传输。在这项研究工作中,通过对时间相位偏移θ进行编程,利用这两种模式进行了传输聚苯乙烯球的实验,这表明使用2D-SW模式可以对传输的多个物体进行精确的位置控制,而使用行波模式实现了高速传输(高达540mm/s),表明双换能器支撑结构可以有效地用于精确和快速传输。作为一种完全非接触的方法,双换能器支撑结构可以在2D-SW模式下用于反应合成或检测应用,也可以在行波模式下用于快速样品传输应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7674/10762448/b84ce478ef07/gr1.jpg

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