Published March 1987 | Version v1
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Electron microscopy study of radiation effects in boron carbide

Description

Boron carbide is a disordered non-stoechiometric material with a strongly microtwinned polycristallyne microstructure. This ceramic is among the candidate materials for the first wall coating in fusion reactor and is used as a neutron absorber in the control rods of fast breeder reactors. The present work deals with the nature of radiation damage in this solid. Because of helium internal production, neutron irradiated boron carbide is affected by swelling and by a strong microcracking which can break up a pellet in fine powder. These processes are rather intensitive to the irradiation parameters (temperature, flux and even neutron spectrum). Transmission electron microscopy of samples irradiated by the fast neutrons of a reactor, the electrons of a high voltage electron microscope and of samples implanted with helium ions was used to understand the respective roles of helium and point defects in the processes of swelling and microcracking. The design of an irradiation chamber for helium implantation at controlled temperature from 600 to 17000C was an important technical part of this work

Availability note (English)

MF available from INIS under the Report Number.

Abstract (French)

Le carbure de bore est a la fois un solide desordonne non-stoechiometrique et un fritte ceramique dont la structure microcristallisee est affectee par un fort micromaclage. Vu ses importantes applications nucleaires (materiau candidat pour la protection de la premiere paroi des reacteurs de fusion; absorbant neutronique dans les barres de controle des surgenerateurs) nous en avons etudie, par microscopie electronique, le comportement sous irradiation. Soumis a une irradiation neutronique ce materiau gonfle par production interne d'helium, se fracture et finit par se reduire en poudre fine. Ces processus sont, dans un large domaine de temperature, insensibles aux parametres de l'irradiation (temperature, flux instantane et meme spectre des neutrons). Dans cette etude fondamentale, l'observation d'echantillons frittes irradies aux neutrons d'un surgenerateur aux electrons d'un microscope electronique a haute tension et aux particules alpha d'un cyclotron a permis de comprendre les mecanismes elementaires du gonflement et de la microfracturation et de separer les roles respectifs des defauts ponctuels et de l'helium. La mise au point de l'experience d'implantation d'helium, a temperature controlee, dans des lames de microscopie electronique a constitue la partie plus technique de ce travail experimental

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Additional details

Additional titles

Original title (French)
Etude par microscopie electronique des effets d'irradiation dans le carbure de bore

Publishing Information

Imprint Pagination
112 p.
Report number
CEA-R--5382