Consistency Evaluation on Preparation Methods of Optical Fiber Photoacoustic Probe

Shanshan Lu, Cheng Li, Shangchun Fan, Xuefeng Song
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Abstract

High consistency of optical fiber photoacoustic (PA) probe contributes to the favorable comparability and reliability of ultrasound testing for biomedical imaging and industrial nondestructive detection. Other than traditional dip coating method, direct spin coating or spin coating- transfer methods are used to fabricate miniature optical fiber PA probes whose endfaces are coated with carbon black/PDMS or nano-carbon powder/PDMS composite. Then the coefficient of variation (CV) is proposed to evaluate the consistency of the developed PA probes in terms of ultrasound pressure, energy conversion efficiency, average frequency and bandwidth. Ultrasound test in a water tank shows that the PA probe with 1% mass fraction of nano carbon powder mixed with PDMS via spin coating-transfer method exhibits a higher consistency with the CV values of 32.0%, 11.8%, 3.1 % and 11.7% corresponding to the aforementioned four consistency parameters. The presented evaluation scheme can also be extended for other types of PA probes using 2D photothermal materials.
光纤光声探头制备方法的一致性评价
光纤光声探头的高一致性为超声检测在生物医学成像和工业无损检测中提供了良好的可比性和可靠性。与传统的浸渍涂层方法不同,采用直接自旋涂层或自旋涂层转移方法制备微型光纤PA探针,其端部涂覆炭黑/PDMS或纳米碳粉/PDMS复合材料。然后提出变异系数(CV)来评价所研制的PA探头在超声压力、能量转换效率、平均频率和带宽方面的一致性。水罐超声测试结果表明,经自旋涂覆-转移法将纳米碳粉与PDMS混合后,质量分数为1%的PA探针具有较高的一致性,其CV值分别为32.0%、11.8%、3.1%和11.7%。所提出的评价方案也可以推广到使用二维光热材料的其他类型的PA探针。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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