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Laser ultrasonics in a multilayer structure: Semi-analytic model and simulated examples.
R Hodé1, M Ducousso2, N Cuvillier2
1Laboratoire d'Acoustique de l'Université du Mans (LAUM), UMR 6613, Institut d'Acoustique-Graduate School (IA-GS), CNRS, Le Mans Université, France.
The Journal of the Acoustical Society of America
|October 2, 2021
Summary
This study introduces a semi-analytic multilayer model to simulate laser-generated ultrasound. The model accurately predicts elastic waves in complex structures, aiding nondestructive evaluation.
Area of Science:
- Physics
- Materials Science
- Acoustics
Background:
- Laser-generated elastic waves involve complex electromagnetic, thermal, and elastic field couplings.
- Semi-analytic approaches offer fast and accurate solutions for multiphysical problems where analytical solutions exist.
- Nondestructive evaluation (NDE) of complex structures, like bonded assemblies, requires advanced simulation methods.
Purpose of the Study:
- To develop and present a semi-analytic multilayer model for simulating laser-generated ultrasound.
- To account for optical penetration, thermal conduction/convection, and coupled physical fields.
- To provide a computational tool for NDE applications in complex materials.
Main Methods:
- A multilayer model is proposed to solve electromagnetic, thermal, and elastodynamic problems sequentially.
- The model incorporates optical penetration from a laser line source.
- Thermal conduction and convection are included, along with optical, thermal, and mechanical coupling conditions between layers.
Main Results:
- The developed model successfully simulates laser-generated ultrasound in multilayer structures.
- The semi-analytic approach provides accurate and efficient results for opto-acoustic generation.
- The simulation is validated for its relevance in NDE of complex assemblies.
Conclusions:
- The proposed semi-analytic multilayer model is effective for simulating laser-generated ultrasound.
- This method is valuable for advancing NDE techniques for intricate structures.
- The study provides an open-source Python code for broader research accessibility.

