Page 45 - 《应用声学》2023年第1期
P. 45

第 42 卷 第 1 期               杨华根等: 基于弹性波超表面的 Lamb 波透射调控                                        41


                 acoustic metamaterials[J]. Journal of Functional Materials  [23] Yuan S M, Chen A L, Wang Y S. Switchable multi-
                 and Device, 2021, 27(2): 67–76.                   functional fish-bone elastic metasurface for transmitted
              [6] 姚翠亚, 梁斌明, 庄松林. 负折射率材料的实现方法和研究进                   plate wave modulation[J]. Journal of Sound and Vibra-
                 展 [J]. 光学仪器, 2009, 31(5): 82–86.                  tion, 2020, 470: 115168.
                 Yao Cuiya, Liang Binming, Zhuang Songlin. Realization  [24] Zhang J, Zhang X, Xu F, et al. Vibration control of flex-
                 and investigation of negative refractive materials[J]. Op-  ural waves in thin plates by 3D-printed metasurfaces[J].
                 tical Instrument, 2009, 31(5): 82–86.             Journal of Sound and Vibration, 2020, 481: 115440.
              [7] Li Y, Jiang X, Liang B, et al. Metascreen-based acoustic  [25] Fu Y, Cao Y, Xu Y. Multifunctional reflection in acoustic
                 passive phased array[J]. Physical Review Applied, 2015,  metagratings with simplified design[J]. Applied Physics
                 4(2): 024003.                                     Letters, 2019, 114(5): 053502.
              [8] Tang K, Qiu C, Ke M, et al. Anomalous refraction of air-  [26] 张守航. 外部激励作用下周期梁结构中波的传播 [D]. 哈尔滨:
                 borne sound through ultrathin metasurfaces[J]. Scientific  哈尔滨工程大学, 2017.
                 Reports, 2014, 4: 1–7.                         [27] Shen Y, Giurgiutiu V. Effective non-reflective boundary
              [9] Qian E, Fu Y, Xu Y, et al. Total omnidirectional re-  for Lamb waves: theory, finite element implementation,
                 flection by sub-wavelength gradient metallic gratings[J].  and applications[J]. Wave Motion, 2015, 58: 22–41.
                 Europhysics Letters, 2016, 114(3): 34003.
             [10] Yong L, Liang B, Tao X, et al. Acoustic focusing by coil-  附表 A  透射偏转结构尺寸 (λ 2 为波在梁中传
                 ing up space[J]. Applied Physics Letters, 2012, 101(23):  播波长)
                 036609.
                                                                  Attached table A    Transmission deflec-
             [11] Yuan B, Ying C, Liu X. Conversion of sound radiation pat-
                 tern via gradient acoustic metasurface with space-coiling  tion structure size (λ 2 is wave propagation
                 structure[J]. Applied Physics Express, 2015, 8(2): 027301.  wavelength in beam)
             [12] Zou H, Li P, Peng P. Ultra-thin underwater acoustic
                 metasurface with multiply resonant units[J]. Physics Let-  s i (i 为单元编号)  ϕ i     λ 2 /h i
                 ters A, 2019, 384(7): 126151.
                                                                          5λ 2            0        1.382
             [13] Li H X, Rosendo-López M, Zhu Y F, et al. Ultrathin
                                                                         4.9λ 2          0.2π       1.46
                 acoustic parity-time symmetric metasurface cloak[J]. Re-
                 search, 2019, 2019: 1–7.                                4.8λ 2          0.4π      1.551
             [14] 李冰, 徐辉宇, 何灵娟, 等. 应用单层超表面实现声波宽角度                        4.7λ 2          0.6π      1.658
                 非对称传输 [J]. 声学技术, 2019, 38(3): 253–257.                  4.6λ 2          0.8π      1.787
                 Li Bing, Xu Huiyu, He Lingjuan, et al. Wide-angle asym-                  π        1.945
                                                                         4.5λ 2
                 metric sound wave transmission in the single-layer meta-
                                                                         4.4λ 2          1.2π      2.149
                 surface[J]. Technical Acoustics, 2019, 38(3): 253–257.
                                                                         4.3λ 2          1.4π      2.422
             [15] Zeng L, Zhang J, Liu Y, et al. Asymmetric transmission of
                 elastic shear vertical waves in solids[J]. Ultrasonics, 2019,  4.2λ 2   1.6π       2.82
                 96: 34–39.                                              4.1λ 2          1.8π      3.482
             [16] Tian Y, Qi W, Cheng Y, et al. Acoustic holography based  4λ 2          2π        4.957
                 on composite metasurface with decoupled modulation of
                 phase and amplitude[J]. Applied Physics Letters, 2017,
                                                                  附表 B    聚焦结构尺寸 (λ 1 为波在板中传播波长)
                 110(19): 191901.
             [17] Yu N, Genevet P, Kats M A, et al. Light propagation  Attached table B  The size of focusing
                 with phase discontinuities: generalized laws of reflection  structure (λ 1 is wave propagation wave-
                 and refraction[J]. Science, 2011, 334(6054): 333–337.  length in beam)
             [18] Li Y, Liang B, Gu Z M, et al. Reflected wavefront manipu-
                 lation based on ultrathin planar acoustic metasurfaces[J].
                                                                    s i (i 为单元编号)        ϕ i        λ 2 /h i
                 Scientific Reports, 2013, 3: 2546.
             [19] Xie Y, Wang W, Chen H, et al. Wavefront modulation     4λ 1            2π         4.958
                 and subwavelength diffractive acoustics with an acoustic  4.013λ 1      1.686π      3.059
                 metasurface[J]. Nature Communications, 2014, 5: 5553.  4.052λ 1        1.386π      2.401
             [20] Mei J, Wu Y. Controllable transmission and total re-
                                                                        4.116λ 1        1.104π      2.044
                 flection through an impedance-matched acoustic metasur-
                                                                         4.2λ 1         0.842π      1.817
                 face[J]. New Journal of Physics, 2014, 16(12): 123007.
                                                                        4.303λ 1        0.606π      1.661
             [21] Zhu H, Semperlotti F. Anomalous refraction of acous-
                 tic guided waves in solids with geometrically tapered  4.421λ 1         0.4π       1.551
                 metasurfaces[J]. Physical Review Letters, 2016, 117(3):  4.55λ 1       0.231π      1.473
                 034302.                                                4.693λ 1        0.105π      1.422
             [22] Cao L, Yang Z, Xu Y. Steering elastic SH waves in an
                                                                        4.843λ 1        0.027π      1.392
                 anomalous way by metasurface[J]. Journal of Sound and
                                                                         5λ 1             0         1.382
                 Vibration, 2018, 418: 1–14.
   40   41   42   43   44   45   46   47   48   49   50