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应用于光纤麦克风的聚氨酯泡沫的性能增强

Performance enhancement of polyurethane foam applied to optical fiber microphones.

作者信息

Zhang Lai, Song Qiuheng, Lai Xin, Ma Yixiao, Xiao Qian, Jia Bo

出版信息

Appl Opt. 2022 May 20;61(15):4322-4328. doi: 10.1364/AO.455383.

Abstract

The application of polyurethane foam to optical fiber microphone sensitization is proposed. In this experiment, the Michelson interference system is used, and polyurethane foam is coated on the optical fiber of the signal arm. By changing the optical fiber material of the signal arm and the reference arm, four sets of comparative experiments are designed to test the sensitivity of the optical microphone. Through a scanning electron microscope (SEM) test and a pore size distribution test, the porous structure and non-closed cell structure characteristics, pore size range, etc., of the polyurethane foam were determined. The average sound absorption coefficient of the polyurethane foam is 0.66 through the sound absorption coefficient and sound insulation test. The sound absorption coefficient of each frequency band is above 0.2, the sound insulation is below 30 dB, and the overall sound insulation performance is poor, which can be regarded as an ideal sound absorption material. The sound-absorbing effect of polyurethane foam is better than that of nylon tight-packed materials in the frequency range of 500-2800 Hz, and it has a significant sensitization effect in this frequency band. In the frequency band above 2800 Hz, the sound-absorbing effect of nylon tight-packed optical fiber is better than that of polyurethane foam, and the optimal combination is determined by lateral comparison as signal arm (nylon tight-packed fiber + polyurethane foam) + reference arm (bare fiber). Finally, with different coating thicknesses as variables, the results show that the optical fiber microphone has the best sound collection effect when the coating thickness of polyurethane foam is 1.5 cm.

摘要

提出了将聚氨酯泡沫应用于光纤麦克风敏化的方法。在本实验中,采用迈克尔逊干涉系统,在信号臂光纤上涂覆聚氨酯泡沫。通过改变信号臂和参考臂的光纤材料,设计了四组对比实验来测试光学麦克风的灵敏度。通过扫描电子显微镜(SEM)测试和孔径分布测试,确定了聚氨酯泡沫的多孔结构、非闭孔结构特征、孔径范围等。通过吸声系数和隔音测试,聚氨酯泡沫的平均吸声系数为0.66。各频段吸声系数均在0.2以上,隔音在30dB以下,整体隔音性能较差,可视为理想的吸声材料。在500 - 2800Hz频率范围内,聚氨酯泡沫的吸声效果优于尼龙紧密包装材料,且在该频段具有显著的敏化效果。在2800Hz以上频段,尼龙紧密包装光纤的吸声效果优于聚氨酯泡沫,通过横向比较确定最佳组合为信号臂(尼龙紧密包装光纤 + 聚氨酯泡沫)+ 参考臂(裸光纤)。最后,以不同的涂层厚度为变量,结果表明当聚氨酯泡沫涂层厚度为1.5cm时,光纤麦克风的声音采集效果最佳。

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