Ring-Focusing Fresnel Acoustic Lens for Long Depth-of-Focus Focused Ultrasound With Multiple Trapping Zones

Journal of Microelectromechanical Systems(2020)

引用 5|浏览2
暂无评分
摘要
This paper describes a novel acoustic transducer with dual functionality based on 1-mm-thick lead zirconate titanate (PZT) substrate with a modified air-cavity Fresnel acoustic lens on top. Designed to let ultrasound waves focus over an annular ring region, the lens generates a long depth-of-focus Bessel-like focal beam and multiple trapping zones based on quasi-Airy beams and bottle beams. With 2.32 MHz sinusoidal driving signal at 150 $\text{V}_{\mathrm {pp}}$ , the transducer produces a focal zone with 9.9 mm depth-of-focus and 0.8 MPa peak pressure at a focal length of 31.33 mm. With 2.32 MHz continuous sinusoidal drive at 30–35 $\text{V}_{\mathrm {pp}}$ , the transducer is able to trap multiple polyethylene microspheres (350–1, $000~\mu \text{m}$ in diameter and 1.025–1.130 g/cm 3 in density) in water either simultaneously (when suspended by mechanical agitation or released from water surface) or sequentially (when placed one after another with a pipette). The largest particles the transducer could trap are two 1-mm-diameter microspheres stuck together (1.07 mg in weight, lifted by buoyancy and $0.257~\mu \text{N}$ acoustic-field-induced force). When the transducer is moved laterally, some firmly trapped microspheres follow along the transducer’s movement, while being trapped. When trapped, some microspheres can rotate due to the rotation torque generated by the quasi-Airy beams. [2020-0184]
更多
查看译文
关键词
Acoustic beams,Acoustics,Transducers,Lenses,Ultrasonic imaging,Force
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要