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  4. Determination of the thermal conductivity in zirconia based inert matrix nuclear fuel by oscillating differential scanning calorimetry and laser flash
 
research article

Determination of the thermal conductivity in zirconia based inert matrix nuclear fuel by oscillating differential scanning calorimetry and laser flash

Pouchon, Manuel A.  
•
Degueldre, Claude
•
Tissot, Paul
1998
Thermochimica Acta

The performances of oscillating differential scanning calorimetry (ODSC) and laser-flash technique in determining the thermal conductivity and the specific heat of zirconia-based materials, analogous to a potential nuclear fuel, were compared. The tested materials were (Zr1−x−y−z,Yx,Ery,Mez)O2−(x+y)/2, with Me=Ce or Th. The measured specific heats were around 0.4 J K−1 g−1 and the thermal conductivities ranged from 2 to 3 W K−1 m−1. The ODSC measurements resulted in cp values. The thermal conductivity was derived from two complementary measurements, one with a thin and the other with a thick sample. The laser-flash technique directly delivered the thermal diffusivity of the sample; consequently, the specific heat capacity cp has to be known for determining the thermal conductivity. The ODSC measurements were affected by the position of the sample on the support. This, consequently, influenced the reproducibility of the measurements. The reproducibility of the scans by laser flash was excellent. Thermal conductivity decreased with increase in the stabilizer (Y, Er) concentration. This trend was justified on the basis of a model including concentration and size of the oxygen vacancies.

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Type
research article
DOI
10.1016/S0040-6031(98)00504-8
Author(s)
Pouchon, Manuel A.  
Degueldre, Claude
Tissot, Paul
Date Issued

1998

Publisher

Elsevier

Published in
Thermochimica Acta
Volume

323

Issue

1-2

Start page

109

End page

121

Subjects

Heat conductivity

•

Innovative nuclear fuel

•

Laser flash

•

Oscillating differential scanning calorimetry

•

Zirconia-based ceramics

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
LNM_PSI  
Available on Infoscience
April 14, 2015
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/113313
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