Journal of Synthetic Crystals, Volume. 51, Issue 7, 1212(2022)

Low-Frequency Band Gap Mechanism and Sound Insulation Characteristics of Helmholtz Periodic Structure with Double Labyrinth Tubes

HAN Donghai1、*, ZHANG Guangjun1, ZHAO Jingbo1, HU Peizhou2, YAO Hong1, and LIU Hong1
Author Affiliations
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  • 2[in Chinese]
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    References(15)

    [4] [4] PARK S H, SEO S H. Low-frequency noise reduction in an enclosure by using a Helmholtz resonator array[J]. Transactions of the Korean Society for Noise and Vibration Engineering, 2012, 22(8): 756-762.

    [7] [7] YANG X N, ZHONG J H, XIANG J W. Designing a phononic crystal with a large defect to enhance elastic wave energy localization and harvesting[J]. Japanese Journal of Applied Physics, 2022, 61(1): 017002.

    [8] [8] KUSHWAHA M S, HALEVI P, DOBRZYNSKI L, et al. Acoustic band structure of periodic elastic composites[J]. Physical Review Letters, 1993, 71(13): 2022-2025.

    [9] [9] MARTNEZ-SALA R, SANCHO J, SNCHEZ J V, et al. Sound attenuation by sculpture[J]. Nature, 1995, 378(6554): 241.

    [10] [10] SHENG P, ZHANG X X, LIU Z, et al. Locally resonant sonic materials[J]. Physica B: Condensed Matter, 2003, 338(1/2/3/4): 201-205.

    [11] [11] FANG N, XI D J, XU J Y, et al. Ultrasonic metamaterials with negative modulus[J]. Nature Materials, 2006, 5(6): 452-456.

    [12] [12] CHENG Y, XU J Y, LIU X J. One-dimensional structured ultrasonic metamaterials with simultaneously negative dynamic density and modulus[J]. Physical Review B, 2008, 77(4): 045134.

    [13] [13] XU C, GUO H, CHEN Y H, et al. Study on broadband low-frequency sound insulation of multi-channel resonator acoustic metamaterials[J]. AIP Advances, 2021, 11(4): 045321.

    [14] [14] HAN D H, ZHAO J B, ZHANG G J, et al. Study on low-frequency band gap characteristics of a new Helmholtz type phononic crystal[J]. Symmetry, 2021, 13(8): 1379.

    [15] [15] LUO Y Q, LOU J J, ZHANG Y B. An acoustic absorbing metamaterial with multi-Helmholtz resonators at low-frequency underwater[J]. Modern Physics Letters B, 2021, 35(23): 2150397.

    [16] [16] GUAN D, WU J H, JING L, et al. Application of a Helmholtz structure for low frequency noise reduction[J]. Noise Control Engineering Journal, 2015, 63(1): 20-35.

    [19] [19] JIANG J L, YAO H, DU J, et al. Multi-cavity locally resonant structure with the low frequency and broad band-gaps[J]. AIP Advances, 2016, 6(11): 115024.

    [20] [20] CAI C Z, MAK C M, SHI X F. An extended neck versus a spiral neck of the Helmholtz resonator[J]. Applied Acoustics, 2017, 115: 74-80.

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    HAN Donghai, ZHANG Guangjun, ZHAO Jingbo, HU Peizhou, YAO Hong, LIU Hong. Low-Frequency Band Gap Mechanism and Sound Insulation Characteristics of Helmholtz Periodic Structure with Double Labyrinth Tubes[J]. Journal of Synthetic Crystals, 2022, 51(7): 1212

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    Paper Information

    Category:

    Received: Mar. 30, 2022

    Accepted: --

    Published Online: Aug. 12, 2022

    The Author Email: Donghai HAN (HanDonghai2021@163.com)

    DOI:

    CSTR:32186.14.

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