Structural Materials for Generation IV Nuclear Reactors

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Informationen zum Autor Pascal Yvon graduated in 1984 from Ecole Centrale Paris (France). He subsequently obtained a Master in Materials Science in 1986 and a PhD in Applied Physics from the California Institute of Technology (USA) for his work on pressure induced crystal to amorphous transformation in the Al-Ge system. After working as a research assistant at the Center for Material Science at the Los Alamos National Laboratory (USA), he worked at the Institute for Advanced Materials in Petten (The Netherlands), before joining CEA in 1996, where he was in charge of studies on the behavior under irradiation of zirconium alloys. Then he held several management positions in the Department of Materials for Nuclear applications, before becoming in 2006 program manager for high temperature reactors, hydrogen production and non-electric applications. Since 2009, Pascal YVON has been the head of the Department of Materials for Nuclear applications of the Nuclear Energy Division of CEA.

Autorentext
Pascal Yvon graduated in 1984 from Ecole Centrale Paris (France). He subsequently obtained a Master in Materials Science in 1986 and a PhD in Applied Physics from the California Institute of Technology (USA) for his work on pressure induced crystal to amorphous transformation in the Al-Ge system. After working as a research assistant at the Center for Material Science at the Los Alamos National Laboratory (USA), he worked at the Institute for Advanced Materials in Petten (The Netherlands), before joining CEA in 1996, where he was in charge of studies on the behavior under irradiation of zirconium alloys. Then he held several management positions in the Department of Materials for Nuclear applications, before becoming in 2006 program manager for high temperature reactors, hydrogen production and non-electric applications. Since 2009, Pascal YVON has been the head of the Department of Materials for Nuclear applications of the Nuclear Energy Division of CEA.

Inhalt

  1. Introduction to Generation IV nuclear reactors

  2. Corrosion phenomena induced by liquid metals in Generation IV reactors

  3. Corrosion phenomena induced by gases in Generation IV nuclear reactors

  4. Corrosion phenomena induced by supercritical water in Generation IV nuclear reactors

  5. Corrosion phenomena induced by molten salts in Generation IV nuclear reactors

  6. Mechanical behavior of structural materials for Generation IV reactors

  7. Irradiation effects in Generation IV nuclear reactor materials

  8. Irradiation-resistant austenitic steels as core materials for Generation IV nuclear reactors

  9. Irradiation-resistant ferritic and martensitic steels as core materials for Generation IV nuclear reactors

  10. Oxide dispersion-strengthened/ferrite-martensite steels as core materials for Generation IV nuclear reactors

  11. Refractory metals as core materials for Generation IV nuclear reactors

  12. SiCf/SiC composites as core materials for Generation IV nuclear reactors

  13. Carbon/carbon materials for Generation IV nuclear reactors

  14. Graphite as a core material for Generation IV nuclear reactors

  15. Absorber materials for Generation IV reactors

  16. Advanced irradiation-resistant materials for Generation IV nuclear reactors

  17. Conventional austenitic steels as out-of-core materials for Generation IV nuclear reactors

  18. Conventional ferritic and martensitic steels as out-of-core materials for Generation IV nuclear reactors

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09780081009062
    • Anzahl Seiten 684
    • Genre Thermal Engineering
    • Editor Yvon Pascal
    • Herausgeber Woodhead Publishing
    • Gewicht 1230g
    • Größe H229mm x B152mm x T38mm
    • Jahr 2016
    • EAN 9780081009062
    • Format Fester Einband
    • ISBN 978-0-08-100906-2
    • Veröffentlichung 23.09.2016
    • Titel Structural Materials for Generation IV Nuclear Reactors
    • Autor Pascal (Cea (Commissariat a L''''energie Ato Yvon
    • Sprache Englisch

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