Etude du comportement à l'oxydation de céramiques ultra-réfractaires à base de diborure d'hafnium (ou zirconium) et de carbure de silicium sous oxygène moléculaire et dissocié

Abstract : This work is part of thermo-structural materials used in the aeronautic and aerospace fields. HfB2-SiC and ZrB2-SiC composites turned out to be very promising for these areas insofar as they present good oxidation resistance at very high temperature. The main issue of this work consists in improving their performances (lifetime, chemical attacks and thermal shocks resistance) and in the understanding of the oxidation mechanisms involved in two different environments (under molecular oxygen, at atmospheric pressure, from 1450 K to 2000 K and under dissociated oxygen, at low oxygen partial pressure, from 1800 K to 2200 K). To this end, a first step consisted in synthesizing, by Spark Plasma Sintering (SPS), several compositions of homogeneous materials in terms of microstructure and relative density. Then, their behavior in both environments has been studied thanks to the use of adapted oxidation facilities (solar furnace and thermogravimetric analyzer) and complementary characterization techniques (scanning electron microscopy, X-ray diffraction, Raman and photo-electron spectroscopies).
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Cassandre Piriou. Etude du comportement à l'oxydation de céramiques ultra-réfractaires à base de diborure d'hafnium (ou zirconium) et de carbure de silicium sous oxygène moléculaire et dissocié. Matériaux. Université de Limoges, 2018. Français. ⟨NNT : 2018LIMO0093⟩. ⟨tel-02010987⟩

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