Remote Thermoelastic Characterization of Candidate Structural and Protective Coatings for Lead-Bismuth Eutectic Cooled Nuclear Reactors

A laser ultrasonics approach to remotely characterize the elastic and thermal properties of a coating-substrate structure, used to protect fuel claddings in lead-bismuth eutectic cooled nuclear reactors, is presented and validated with experimental results. A transient grating geometry is used for m...

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Main Authors: Bert Verstraeten, Jan Sermeus, Tom Van der Donck, Paul Schuurmans, Christ Glorieux
Format: Article
Language:English
Published: MDPI AG 2019-03-01
Series:Applied Sciences
Subjects:
Online Access:http://www.mdpi.com/2076-3417/9/5/915
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spelling doaj-fcba1d8f55164c1699bde637e62f3b132020-11-25T00:33:03ZengMDPI AGApplied Sciences2076-34172019-03-019591510.3390/app9050915app9050915Remote Thermoelastic Characterization of Candidate Structural and Protective Coatings for Lead-Bismuth Eutectic Cooled Nuclear ReactorsBert Verstraeten0Jan Sermeus1Tom Van der Donck2Paul Schuurmans3Christ Glorieux4Soft Matter and Biophysics, Department of Physics and Astronomy, KU Leuven, Celestijnenlaan 200D, B-3001 Heverlee, BelgiumSoft Matter and Biophysics, Department of Physics and Astronomy, KU Leuven, Celestijnenlaan 200D, B-3001 Heverlee, BelgiumDepartment of Materials Engineering, KU Leuven, W. de Croylaan 2, B-3001 Leuven, BelgiumBelgian Nuclear Research Centre SCK-CEN, Boeretang 200, B-2400 Mol, BelgiumSoft Matter and Biophysics, Department of Physics and Astronomy, KU Leuven, Celestijnenlaan 200D, B-3001 Heverlee, BelgiumA laser ultrasonics approach to remotely characterize the elastic and thermal properties of a coating-substrate structure, used to protect fuel claddings in lead-bismuth eutectic cooled nuclear reactors, is presented and validated with experimental results. A transient grating geometry is used for multiple wavelength excitation of thermoelastic displacements, and laser beam deflection for detection. The value of Young’s modulus of the coating layer as calculated from the coating’s Rayleigh velocity of 190 ± 50 GPa is in accordance with a nano-indentation measurement. Using a priori knowledge concerning the density and elastic parameters of the coating and substrate, scanning the sample allows the obtaining of a coating thickness map in a fully remote, all-optical way, with an accuracy of about 4 microns for a coating of around 20-micron average thickness. Analyzing the transient thermal grating decay yields a thermal diffusivity value of ( 5.0 ± 1.6 ) × 10 − 6 m 2 /s, in the range of low-carbon steels. The consistency of the results infers that the all-optical laser ultrasonics approach should be feasible for remote inspection of the quality of optically rough coated claddings in the harsh environment of a nuclear reactor.http://www.mdpi.com/2076-3417/9/5/915non-destructive testingremote characterizationlead-bismuth coolingelastic characterizationthermal characterizationlaser ultrasonicscoating characterizationfuel cladding
collection DOAJ
language English
format Article
sources DOAJ
author Bert Verstraeten
Jan Sermeus
Tom Van der Donck
Paul Schuurmans
Christ Glorieux
spellingShingle Bert Verstraeten
Jan Sermeus
Tom Van der Donck
Paul Schuurmans
Christ Glorieux
Remote Thermoelastic Characterization of Candidate Structural and Protective Coatings for Lead-Bismuth Eutectic Cooled Nuclear Reactors
Applied Sciences
non-destructive testing
remote characterization
lead-bismuth cooling
elastic characterization
thermal characterization
laser ultrasonics
coating characterization
fuel cladding
author_facet Bert Verstraeten
Jan Sermeus
Tom Van der Donck
Paul Schuurmans
Christ Glorieux
author_sort Bert Verstraeten
title Remote Thermoelastic Characterization of Candidate Structural and Protective Coatings for Lead-Bismuth Eutectic Cooled Nuclear Reactors
title_short Remote Thermoelastic Characterization of Candidate Structural and Protective Coatings for Lead-Bismuth Eutectic Cooled Nuclear Reactors
title_full Remote Thermoelastic Characterization of Candidate Structural and Protective Coatings for Lead-Bismuth Eutectic Cooled Nuclear Reactors
title_fullStr Remote Thermoelastic Characterization of Candidate Structural and Protective Coatings for Lead-Bismuth Eutectic Cooled Nuclear Reactors
title_full_unstemmed Remote Thermoelastic Characterization of Candidate Structural and Protective Coatings for Lead-Bismuth Eutectic Cooled Nuclear Reactors
title_sort remote thermoelastic characterization of candidate structural and protective coatings for lead-bismuth eutectic cooled nuclear reactors
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2019-03-01
description A laser ultrasonics approach to remotely characterize the elastic and thermal properties of a coating-substrate structure, used to protect fuel claddings in lead-bismuth eutectic cooled nuclear reactors, is presented and validated with experimental results. A transient grating geometry is used for multiple wavelength excitation of thermoelastic displacements, and laser beam deflection for detection. The value of Young’s modulus of the coating layer as calculated from the coating’s Rayleigh velocity of 190 ± 50 GPa is in accordance with a nano-indentation measurement. Using a priori knowledge concerning the density and elastic parameters of the coating and substrate, scanning the sample allows the obtaining of a coating thickness map in a fully remote, all-optical way, with an accuracy of about 4 microns for a coating of around 20-micron average thickness. Analyzing the transient thermal grating decay yields a thermal diffusivity value of ( 5.0 ± 1.6 ) × 10 − 6 m 2 /s, in the range of low-carbon steels. The consistency of the results infers that the all-optical laser ultrasonics approach should be feasible for remote inspection of the quality of optically rough coated claddings in the harsh environment of a nuclear reactor.
topic non-destructive testing
remote characterization
lead-bismuth cooling
elastic characterization
thermal characterization
laser ultrasonics
coating characterization
fuel cladding
url http://www.mdpi.com/2076-3417/9/5/915
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