2-D Elastodynamic Time-Reversal Analysis for Surface Defects on Thin Plate Using Topological Sensitivity

Author:

Saitoh Takahiro1

Affiliation:

1. Department of Civil and Environmental Engineering, Gunma University, 1-5-1 Tenjin, Kiryu 376-8515, Gunma, Japan

Abstract

In recent years, there has been increasing attention on the development of non-destructive evaluation (NDE) methods using guided waves for long-length materials such as thin plates and pipes. The guided waves are capable of long-distance propagation in thin plates and pipes, and they exhibit properties such as multimodality and dispersion. These characteristics of the guided waves make inspection using guided waves challenging. In this study, we apply a 2-D elastodynamic time-reversal method to detect surface breaking cracks of a thin plate where guided waves are present. The finite element method (FEM) is used to calculate the scattered waves from surface breaking cracks and their corresponding time-reversal waves. We also employ topological sensitivity as an assessment index for detecting surface breaking cracks using the time-reversal method. As numerical examples, we demonstrate guided wave propagation, scattering, and the time-reversal wave propagation obtained by using the FEM. Finally, we present the results of surface breaking crack detection in a thin plate and discuss the validity and effectiveness of the proposed method.

Funder

JSPS KAKENHI

SECOM Science and Technology Foundation

Publisher

MDPI AG

Subject

Geometry and Topology,Logic,Mathematical Physics,Algebra and Number Theory,Analysis

Reference40 articles.

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4. Formulation of the FDTD method for separating the particle velocity vectors of an elastic wave field into longitudinal and shear wave components;Sato;Acoust. Sci. Technol.,2004

5. Hughes, T. (2012). The Finite Element Method: Linear Static and Dynamic Finite Element Analysis, Dover Publications.

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