Affiliation:
1. University of Rome “Tor Vergata”
2. University of Perugia
3. University of Rome "Tor Vergata"
4. CALEF- ENEA CR Casaccia
Abstract
EUROFER97 martensitic steel is recognized in EU as the reference material for the test blanket module in ITER reactor and for structural sections subject to high radiation doses in DEMO reactor. An extended experimental campaign has been carried out with the scope of improving strength without loss of ductility. The main idea behind the present study is to reach the goal through grain refinement achieved by cold rolling and heat treatments for inducing recrystallization of the work hardened structure. A combination of five cold rolling reduction ratios (CR) (20%, 40%, 50%, 60%, 80%) and eight heat treatments in the temperature range 400-750°C (steps of 50 °C) with soaking time of 1 hour has been examined to describe the evolution of microstructure and mechanical properties. The strength of deformed samples decreases as the heat treatment temperature increases and the change is more pronounced in the samples cold-rolled with higher CR ratios. The results showed that cold rolling with CR of 80% followed by a treatment at 650 °C produces a fully recrystallized structure with sub-micrometric grains which guarantees improved yield stress and hardness than standard EUROFER97 steel, with a comparable total elongation. In conclusion, this work demonstrated the feasibility to strengthen EUROFER97 without compromising its ductility.
Publisher
Trans Tech Publications, Ltd.
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference21 articles.
1. M. Rieth, M. Schirra, A. Falkenstein, P. Graf, S. Heger, H. Kempe, R. Lindau, H. Zimmermann, EUROFER 97 Tensile, Charpy, Creep and Structural Tests. Report FZKA6911, Eurofusion programme, 2003.
2. Martensitic transformation in Eurofer-97 and ODS-Eurofer steels: A comparative study;Zilnyk;Journal of Nuclear Materials
3. Improvement of EUROFER's mechanical properties by optimized chemical compositions and thermo-mechanical treatments;Hoffmann;Nuclear Materials and Energy
4. G. Stornelli, M. Rallini, C. Testani, R. Montanari, A. Di Schino, G. Stornelli, R. Montanari, C. Testani, A. Di Schino, Effect of thermo-mechanical treatment on EUROFER 97 steel for nuclear fusion application, La Metallurgia Italiana, 112(10) (2020) 34–44.
5. Mechanical properties and microstructure characterization of Eurofer97 steel variants in EUROfusion program;Chen;Fusion Engineering and Design
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献