4.7 Article

Nonlinear Modes in Shear Horizontal Wave Propagation-Analytical and Numerical Analysis

Journal

JOURNAL OF SOUND AND VIBRATION
Volume 540, Issue -, Pages -

Publisher

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jsv.2022.117247

Keywords

Shear horizontal waves; Material nonlinearity; Nonlinear wave propagation; Nonlinear modes; Distorted dispersion curves

Funding

  1. Polish National Science Centre [UMO-2018/30/Q/ST8/00571]
  2. Polish-Chinese collaborative research SHENG initiative [51961135302]

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This study focuses on the analytical investigation of nonlinear shear horizontal guided wavefields in plates, examining the impact of nonlinear material parameters, excitation frequency, wave number, and wave amplitude on nonlinear mode generation. The analytical solution is based on the multiple-scale perturbation method and modal decomposition approach, validated using the Local Interaction Simulation Approach.
Nonlinear shear horizontal guided wavefield is investigated analytically in plates. The major focus is on the effect of nonlinear material parameters, excitation frequency, wave number and wave amplitude on nonlinear mode generation. The analytical solution is based on the multiple -scale perturbation method and modal decomposition approach. The approximate analytical solution is validated using the Local Interaction Simulation Approach, implemented for non-linear shear wave propagation. The results show that the analysed shear horizontal wavefield is distorted by material nonlinearity. The resulting displacement field can be interpreted in a form of nonlinear modes.

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