Page 116 - 《应该声学》2022年第2期
P. 116
284 2022 年 3 月
[3] Zhang L, Zhang Y, Liu X Z, et al. Multi-crack imaging [13] Lima W J N, Hamilton M F. Finite-amplitude waves in
using nonclassical nonlinear acoustic method[J]. Chinese isotropic elastic plates[J]. Journal of Sound and Vibration,
Physics B, 2014, 23(10): 104301. 2003, 265(4): 819–839.
[4] Zhu J L, Zhang Y, Liu X Z. Simulation of multi-cracks [14] Deng M. Cumulative second-harmonic generation of
in solids using nonlinear elastic wave spectroscopy with Lamb-mode propagation in a solid plate[J]. Journal of Ap-
a time-reversal process[J]. Wave Motion, 2014, 51(1): plied Physics, 1998, 85(6): 3051.
146–156. [15] Deng M. Cumulative second-harmonic generation accom-
[5] Zhou D, Liu X Z, Gong X F, et al. Concrete dam- panying nonlinear shear horizontal mode propagation in
age diagnosed using the non-classical nonlinear acoustic a solid plate[J]. Journal of Applied Physics, 1998, 84(7):
method[J]. Chinese Physics B, 2009, 18(5): 1898–1905. 3500–3505.
[6] Cantrell J H, William T Y. Nonlinear ultrasonic character-
[16] 赵珊珊, 邓明晰, 项延训, 等. 超声 Lamb 波二次谐波发生效
ization of fatigue microstructures[J]. International Journal
率分析与模式选择 [J]. 声学学报, 2017, 42(3): 290–296.
Fatigue, 2001, 23: S487–S490.
Zhao Shanshan, Deng Mingxi, Xiang Yanxun, et al. Ex-
[7] 张世功, 吴先梅, 张碧星, 等. 一维非线性声波传播特性 [J]. 物
citation efficiency analysis and mode selection on second
理学报, 2016, 65(10): 104301.
harmonic generation of ultrasonic Lamb waves[J]. Acta
Zhang Shigong, Wu Xianmei, Zhang Bixing, et al. Prop-
Acustica, 2017, 42(3): 290–296.
agation properties of one-dimensional nonlinear acoustic
[17] Liu Y, Chillara V K, Lissenden C J. On selection of pri-
waves[J]. Acta Physics Sinica, 2016, 65(10): 104301.
mary modes for generation of strong internally resonant
[8] 税国双, 黄蓬, 汪越胜. 列车外圆弹簧疲劳损伤的非线性超声
second harmonics in plate[J]. Journal of Sound and Vi-
测试 [J]. 声学学报, 2013, 38(5): 570–575.
bration, 2013, 332(19): 4517–4528.
Shui Guoshuang, Huang Peng, Wang Yuesheng. Non-
[18] Xiang Y X, Zhu W J, Deng M X, et al. Experimental
destructive evaluation of fatigue damage of train spring
and numerical studies of nonlinear ultrasonic responses
using nonlinear ultrasonic method[J]. Acta Acustica, 2013,
on plastic deformation in weld joints[J]. Chinese Physics
38(5): 570–575.
B, 2016, 25(2): 024303.
[9] 钱祖文. 各向同性弹性介质中 P 波与 SV 波的非线性相互作
[19] Auld B A. Acoustic field and waves in solids[M]. London:
用 [J]. 声学学报, 1996, 21(4): 346–351.
John Wiley and Sons, 1973.
Qian Zuwen. Nonlinear interaction between P and SV
wave in isotropic elastic media[J]. Acta Acustica, 1996, [20] Muller M F, Kim J Y, Qu J M, et al. Characteristics of
21(4): 346–351. second harmonic generation of Lamb waves in nonlinear
[10] Zaboloskaya E A. Nonlinear propagation of plane and cir- elastic plates[J]. The Journal of the Acoustical Society of
cular Rayleigh waves in isotropic solids[J]. The Journal of America, 2010, 127(4): 2141–2152.
the Acoustical Society of America, 1992, 91: 2568–2575. [21] Zhang B X, Lu L Y. Rayleigh wave and detection of
[11] Hamilton M F, II’insky Y A, Zaboloskaya E A. Evolution low-velocity layers in a stratified half-space[J]. Acoustical
equations for nonlinear Rayleigh waves[J]. The Journal of Physics, 2003, 49(5): 516–528.
the Acoustical Society of America, 1995, 97: 891–897. [22] 邓明晰. 分层结构中兰姆波二次谐波发生的模式展开分析 [J].
[12] Herrmann J, Kim J Y, Jacobs L J, et al. Assessment of 声学学报, 2005, 30(2): 132–142.
material damage in a nickel-base superalloy using nonlin- Deng Mingxi. Model expansion analyses of second-
ear Rayleigh surface waves[J]. Journal of Applied Physics, harmonic generation of the Lamb waves in layered struc-
2006, 99(12): 124913. tures[J]. Acta Acustica, 2005, 30(2): 132–142.