高级检索

扇形谐振腔亚波长声聚焦的声泳喷印装置设计

Design of acoustophoretic printing device with acoustic subwavelength focusing of fan resonant cavity

  • 摘要: 针对亚波长声驻波的聚焦问题,提出一种改进的用于声泳喷印装置的多通道扇形谐振腔结构,该结构由三层扇形结构构成,扇形的半径为亚波长的整倍长度,所有扇形通道汇聚到一起产生法布里-玻罗共振,实现亚波长聚焦。文中采用Comsol软件,对凹槽尺寸、凹槽个数、通道宽度以及孔的大小进行仿真分析。研究结果表明,该结构能在20 kHz的频率下实现亚波长超声聚焦,聚焦的声压幅度能达到18000 Pa左右。在此声压幅度的基础上,有望能使声泳喷印装置喷射出黏度更大、直径更小的液滴。

     

    Abstract: For the focusing problem of acoustic standing wave of subwavelength, an improved fan resonant cavity structure with multiple channels used for the acoustophoretic printing device is proposed, which consists of a three-layer fan structure with the fan radius being an integral multiple of the subwavelength length, and all the fan channels converge to produce Fabry-Perot resonance for subwavelength focusing. In this paper, Comsol software is used to simulate and analyze the effects of groove size, number of grooves, channel width and aperture size of hole on sound pressure amplitude. The results show that the structure achieves acoustic subwavelength focusing at a frequency of 20 kHz, and the sound pressure amplitude at the of focusing can reach about 18 000 Pa. On the basis of this sound pressure amplitude, it is expected that the acoustic printing device can eject droplets with higher viscosity and smaller diameters.

     

/

返回文章
返回