Ultrasonic Spectral Analysis for Nuclear Fuel Characterization


Autoria(s): BARONI, Douglas Brandão; BITTENCOURT, Marcelo de Siqueira Queiroz; LEAL, Antônio M. M.
Data(s)

07/06/2016

07/06/2016

01/10/2011

Resumo

Ceramic materials have been widely used for various purposes in many different industries due to certain characteristics, such as high melting point and high resistance to corrosion. Concerning the areas of applications, automobile, aeronautics, naval and even nuclear, the characteristics of these materials should be strictly controlled. In the nuclear area, ceramics are of great importance once they are the nuclear fuel pellets and must have, among other features, a well controlled porosity due to mechanical strength and thermal conductivity required by the application. Generally, the techniques used to characterize nuclear fuel are destructive and require costly equipment and facilities. This paper aims to present a nondestructive technique for ceramic characterization using ultrasound. This technique differs from other ultrasonic techniques because it uses ultrasonic pulse in frequency domain instead of time domain, associating the characteristics of the analyzed material with its frequency spectrum. In the present work, 40 Alumina (Al2O3) ceramic pellets with porosities ranging from 5% to 37%, in absolute terms measured by Archimedes technique, were tested. It can be observed that the frequency spectrum of each pellet varies according to its respective porosity and microstructure, allowing a fast and non-destructive association of the same characteristics with the same spectra pellets.

Identificador

http://carpedien.ien.gov.br:8080/handle/ien/1772

Idioma(s)

eng

Publicador

Instituto de Engenharia Nuclear

Brasil

IEN

Direitos

openAccess

Palavras-Chave #Ultrassonic #Nuclear Fuel #Ceramics #Spectral Analysis
Tipo

conferenceObject