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采用无芯光纤的光纤多点激光超声激发换能器。

Fiber-optic multipoint laser-ultrasonic excitation transducer using coreless fibers.

作者信息

Li Yuan, Tian Jiajun, Ji Shaobo, Zhou Cheng, Sun Yunxu, Yao Yong

出版信息

Opt Express. 2019 Mar 4;27(5):6116-6128. doi: 10.1364/OE.27.006116.

Abstract

Photoacoustic ultrasound excitation has great potential in structural nondestructive testing and applications for medical treatments as a promising alternative to electrical ultrasound. This study proposes and demonstrates a multipoint optical fiber laser-ultrasonic transducer system, wherein the fiber-optic ultrasonic transducer is fabricated by a coreless fiber segment's fusion with single-mode fibers at each end. Simulation and experiment results show that the transducer coupling ratio is dependent on the coreless fiber's length. The structure of such an ultrasonic transducer is easily manufactured. Thus, the structures of these optical fiber ultrasonic transducers with different coupling ratios are connected in the order of small to large coupling ratios. In this manner, multipoint ultrasonic excitation with equal intensities at each excitation point can be obtained using this simple and low-cost method. Using laser guidance through the optical fiber to generate ultrasound can efficiently solve some shortcomings of traditional ultrasonic transducers, such as large volume, small bandwidth, and electromagnetic interference. Moreover, this type of fiber-optic ultrasound transducer has higher mechanical strength than other fiber-optic ultrasound transducers and is expected to be useful in structural health-monitoring of buildings.

摘要

光声超声激发在结构无损检测以及作为电超声的一种有前景的替代方案用于医学治疗方面具有巨大潜力。本研究提出并演示了一种多点光纤激光超声换能器系统,其中光纤超声换能器是通过无芯光纤段与两端的单模光纤熔接制成的。仿真和实验结果表明,换能器的耦合比取决于无芯光纤的长度。这种超声换能器的结构易于制造。因此,将这些具有不同耦合比的光纤超声换能器的结构按耦合比从小到大的顺序连接起来。通过这种方式,使用这种简单且低成本的方法可以在每个激发点获得强度相等的多点超声激发。利用激光通过光纤来产生超声能够有效解决传统超声换能器的一些缺点,如体积大、带宽小和电磁干扰等问题。此外,这种类型的光纤超声换能器比其他光纤超声换能器具有更高的机械强度,有望用于建筑物的结构健康监测。

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