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3D printed acoustic metamaterials with microscale gaps as sound-absorbing mask for the patients of Tourette syndrome

机译:3D印刷声学超材料,带有微观空隙作为吸音患者的吸音面具

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摘要

Tourette syndrome (TS) is an inherited neurophysiologic disorder with onset in childhood, characterized by multiple physical (motor) tics and at least one vocal (phonic) tic. Patients with TS constantly feel immense anxiety in public due to the issues of vocal tics or coprolalia. Therefore, this study aims to design a specialized mask for TS patients to reduce the intensity of vocal tic or coprolalia such that the quality of life can be greatly improved. The paper presents a novel concept of sound absorption using 3d-printed acoustic metamaterials (AMs) with microscale gaps as the impedance-matched surface and experimental study on sound transmission loss. A simple construction based on the acoustically impedance matched surface embedded with asymmetric metallic platelets, hybrid resonances with high energy dissipation can be confined and absorb low-frequency airborne sound in frequencies ranging from 10 to 1300Hz. The octave band analysis on the samples sound suppression capability is discussed. The field test results revealed an effective sound suppression capability can be fulfilled in the range of 89-94% for the frequency range 10-1300Hz. The sound absorption performances of customized mask are shown to be effective and the prototypes had been clinically tested on the patients of TS. An alternative low-cost, impedance-matched AMs structure for the patients of TS is successfully developed.
机译:Tourette综合征(TS)是一种遗传性的神经生理障碍,具有在儿童时期发作,其特征在于多种物理(电动机)TIC和至少一个声带(Phonic)TIC。由于声乐TICS或Coprolalia的问题,TS的患者在公众中不断感到焦虑。因此,本研究旨在为TS患者设计一个专门的面膜,以减少声带或共同体的强度,使得生活质量可以大大提高。本文介绍了使用带有微观差距的3D印刷声学超材料(AMS)作为阻抗匹配的表面和声音传输损失的实验研究的新颖的吸收概念。基于嵌入不对称金属血小板的声学阻抗匹配表面的简单结构,具有高能量耗散的混合共振可以被限制并在10至1300Hz的频率下吸收低频空气发声。讨论了样本声音抑制能力的八度音频分析。现场测试结果显示有效的声音抑制能力,可以在89-94%的频率范围内实现10-1300Hz。定制掩模的吸音性能显示有效,原型在TS的患者上临床测试。成功开发了TS患者的替代低成本,阻抗匹配的AMS结构。

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