Finite element simulation of laser generated ultrasound waves in aluminum plates

The Laser-Ultrasonic technique uses laser energy to generate ultrasound waves in various solids. This technique allows inspecting large structures. The generated ultrasound wave form is affected by features of laser pulse (wavelength, pulse duration, power density). The goal of this paper is to stud...

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Main Authors: Peyman Soltani, Negar Akbareian
Format: Article
Language:English
Published: Marcílio Alves
Series:Latin American Journal of Solids and Structures
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252014001000004&lng=en&tlng=en
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spelling doaj-4119d5d93bbf45da931184040f8316f12020-11-24T22:14:29ZengMarcílio AlvesLatin American Journal of Solids and Structures1679-782511101761177610.1590/S1679-78252014001000004S1679-78252014001000004Finite element simulation of laser generated ultrasound waves in aluminum platesPeyman Soltani0Negar Akbareian1Isfahan University of TechnologyIsfahan University of TechnologyThe Laser-Ultrasonic technique uses laser energy to generate ultrasound waves in various solids. This technique allows inspecting large structures. The generated ultrasound wave form is affected by features of laser pulse (wavelength, pulse duration, power density). The goal of this paper is to study the effects of laser parameters (rise time and beam radius of laser) on the laser generated surface acoustic waves in an aluminum plate. The results obtained from the finite element model of laser generated ultrasound are presented in terms of temperature and displacement. At first, the transient temperature field can be precisely calculated by using the finite element method. Then, laser generated surface acoustic wave forms are calculated in aluminum plate. Results from numerical simulation are compared with other references; the accuracy of the method is proved accordingly. In this simulation the sequential field coupling is used. Simulation results show that the laser parameters have a significant influence on the ultrasound waves and will be able to be utilized to choose best experimental parameters of laser.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252014001000004&lng=en&tlng=enLaser UltrasonicUltrasonic WavesSimulation by Finite Element Method
collection DOAJ
language English
format Article
sources DOAJ
author Peyman Soltani
Negar Akbareian
spellingShingle Peyman Soltani
Negar Akbareian
Finite element simulation of laser generated ultrasound waves in aluminum plates
Latin American Journal of Solids and Structures
Laser Ultrasonic
Ultrasonic Waves
Simulation by Finite Element Method
author_facet Peyman Soltani
Negar Akbareian
author_sort Peyman Soltani
title Finite element simulation of laser generated ultrasound waves in aluminum plates
title_short Finite element simulation of laser generated ultrasound waves in aluminum plates
title_full Finite element simulation of laser generated ultrasound waves in aluminum plates
title_fullStr Finite element simulation of laser generated ultrasound waves in aluminum plates
title_full_unstemmed Finite element simulation of laser generated ultrasound waves in aluminum plates
title_sort finite element simulation of laser generated ultrasound waves in aluminum plates
publisher Marcílio Alves
series Latin American Journal of Solids and Structures
issn 1679-7825
description The Laser-Ultrasonic technique uses laser energy to generate ultrasound waves in various solids. This technique allows inspecting large structures. The generated ultrasound wave form is affected by features of laser pulse (wavelength, pulse duration, power density). The goal of this paper is to study the effects of laser parameters (rise time and beam radius of laser) on the laser generated surface acoustic waves in an aluminum plate. The results obtained from the finite element model of laser generated ultrasound are presented in terms of temperature and displacement. At first, the transient temperature field can be precisely calculated by using the finite element method. Then, laser generated surface acoustic wave forms are calculated in aluminum plate. Results from numerical simulation are compared with other references; the accuracy of the method is proved accordingly. In this simulation the sequential field coupling is used. Simulation results show that the laser parameters have a significant influence on the ultrasound waves and will be able to be utilized to choose best experimental parameters of laser.
topic Laser Ultrasonic
Ultrasonic Waves
Simulation by Finite Element Method
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252014001000004&lng=en&tlng=en
work_keys_str_mv AT peymansoltani finiteelementsimulationoflasergeneratedultrasoundwavesinaluminumplates
AT negarakbareian finiteelementsimulationoflasergeneratedultrasoundwavesinaluminumplates
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