• Chinese Journal of Ship Research
  • Vol. 19, Issue 6, 237 (2024)
Xi WEI1, Xianyu LIU2, Li CHEN2, Zhimin ZHAO3, and Nianzhong CHEN3
Author Affiliations
  • 1Drilling Technology Research Institute, Sinopec Oilfield Service Shengli Corporation, Dongying 257017, China
  • 2Center of Engineering Technology and Operation, Zhanjiang Subsidary Company of CNOOC (China) Co. Ltd., Zhanjiang 524057, China
  • 3School of Civil Engineering, Tianjin University, Tianjin 300350, China
  • show less
    DOI: 10.19693/j.issn.1673-3185.03450 Cite this Article
    Xi WEI, Xianyu LIU, Li CHEN, Zhimin ZHAO, Nianzhong CHEN. Investigation of propagation characteristics of acoustic emission waves in composite heterogeneous structures[J]. Chinese Journal of Ship Research, 2024, 19(6): 237 Copy Citation Text show less
    References

    [2] G NESER. Polymer based composites in marine use: history and future trends. Procedia Engineering, 194, 19-24(2017).

    [3] Z ZHAO, N Z CHEN. Acoustic emission based damage source localization for structural digital twin of wind turbine blades. Ocean Engineering, 265, 112552(2022).

    [6] Y DU, S X ZHOU, X J JING et al. Damage detection techniques for wind turbine blades: a review. Mechanical Systems and Signal Processing, 141, 106445(2020).

    [7] F DAHMENE, S YAACOUBI, M E L MOUNTASSIR. Acoustic emission of composites structures: story, success, and challenges. Physics Procedia, 70, 599-603(2015).

    [8] C HAN, G A YANG, J Y WANG et al. The research on propagation characteristics of acoustic emission signals in stiffened plates based on the multipath propagation model. Ultrasonics, 108, 106177(2020).

    [11] ROSE J L. Ultrasonic waves in solid media[M]. Cambridge: Cambridge University Press, 2014.

    [13] H KHORRAMI, M MOAVENIAN. A comparative study of DWT, CWT and DCT transformations in ECG arrhythmias classification. Expert Systems with Applications, 37, 5751-5757(2010).

    [14] X QIU, Y J WANG, J X XU et al. Acoustic emission propagation characteristics and damage source localization of asphalt mixtures. Construction and Building Materials, 252, 119086(2020).

    [16] S SIKDAR, S BANERJEE. Identification of disbond and high density core region in a honeycomb composite sandwich structure using ultrasonic guided waves. Composite Structures, 152, 568-578(2016).

    [17] S SIKDAR, P MIRGAL, S BANERJEE. Low-velocity impact source localization in a composite sandwich structure using a broadband piezoelectric sensor network. Composite Structures, 91, 115619(2022).

    [18] C A LECKEY, K R WHEELER, V N HAFIYCHUK et al. Simulation of guided-wave ultrasound propagation in composite laminates: Benchmark comparisons of numerical codes and experiment. Ultrasonics, 84, 187-200(2018).

    [20] F DAHMENE, S YAACOUBI, MOUNTASSIR M El et al. On the modal acoustic emission testing of composite structure. Composite Structures, 140, 446-452(2016).

    [21] F MOSER, L J JACOBS, J M QU. Modeling elastic wave propagation in waveguides with the finite element method. Ndt & E International, 32, 225-234(1999).

    Xi WEI, Xianyu LIU, Li CHEN, Zhimin ZHAO, Nianzhong CHEN. Investigation of propagation characteristics of acoustic emission waves in composite heterogeneous structures[J]. Chinese Journal of Ship Research, 2024, 19(6): 237
    Download Citation