Published October 15, 2015 | Version v1
Report Restricted

Optimization of the cold processing of 15-15Ti AIM1 austenitic steel cladding tubes

Description

In order to face the next century energy demand growth, the worldwide development of the 4. generation of nuclear reactors is considered. The construction of a sodium-cooled fast reactor prototype (ASTRID) is currently envisaged at the CEA. The reference material selected for the fuel cladding of its first core is the 15-15Ti-AIM1 austenitic steel (Austenitic Improved Material). The goal of this PhD thesis work is to investigate the different ways of optimization for the cold working steps undergone by the claddings during their manufacture in order to improve their swelling resistance. The main investigations are focused on the conditions of the cold-working steps and the thermal treatments applied throughout the shaping of the claddings, especially of the last solution annealing treatment. The effects of these parameters on the microstructure are investigated (structural refinement, precipitation and the additive elements dissolution and arrangement of the dislocations). This study is divided into three main steps: An analysis of the fabrication routes applied in the past along with the study of the 'cold-work' and the thermal treatments conditions; An assessment of new shaping processes, such as the 'cold-pilgering' and the hammering, in order to verify the conformity of the manufactured tubes with respect to the required specifications; An attempt of optimization of the cold-work routes and the microstructure of the final material. The results of microstructure characterization and the mechanical behavior allow envisaging favorably the use of an alternative process such as the cold pilgering to manufacture claddings. (author)

Abstract (French)

Afin de faire face aux besoins croissants en energie, les reacteurs de IVeme generation sont envisages mondialement. Un premier prototype de reacteur a neutrons rapides a caloporteur sodium (appele ASTRID) est a l'etude au CEA. Le materiau de reference retenu pour le gainage combustible du premier coeur est l'acier austenitique 15-15Ti - AIM1 (Austenitic Improved Material). L'objectif de la these est d'etudier des voies d'optimisation de la gamme de mise en forme a froid du gainage permettant d'ameliorer la resistance au gonflement. Les investigations portent principalement sur les conditions de transformation a froid et les traitements thermiques appliques au cours de la mise en forme (notamment lors du dernier traitement d'hypertrempe). Les effets de ces parametres sont etudies en lien avec la microstructure (notamment l'affinement structural, l'etat de precipitation, la remise en solution des elements d'addition et l'arrangement des dislocations). La demarche adoptee se divise en trois etapes principales: Une analyse des gammes de fabrication mises en oeuvre par le passe ainsi qu'une etude des conditions d'etirage a froid et des traitements thermiques appliques; Une evaluation de nouveaux procedes de mise en forme tels que le laminage a pas de pelerin et le martelage visant a valider la fabrication des tubes finis selon les specifications requises; Une optimisation des gammes de fabrication a froid et de la microstructure du materiau final. Les resultats de caracterisation de la microstructure et du comportement mecanique permettent d'envisager favorablement l'utilisation d'un procede alternatif tel que le laminage a pas de pelerin pour fabriquer les tubes de gaine

Files

Restricted

The record is publicly accessible, but files are restricted to users with access.

Additional details

Additional titles

Original title (French)
Optimisation de la transformation a froid des tubes de gaine en acier austenitique 15-15Ti AIM1

Publishing Information

Imprint Pagination
266 p.
Report number
FRCEA-TH--7296

Optional Information

Notes
140 refs.; Available from the INIS Liaison Officer for France, see the 'INIS contacts' section of the INIS-NKM website for current contact and E-mail addresses: http://www.iaea.org/inis/Contacts/; Also available from SCD de l'Universite de Poitiers, 15 Rue de l'Hotel Dieu, 86000 Poitiers (France)
Secondary number(s)
CEA-R--6425