Structural Alloys for Nuclear Energy Applications
Editat de Robert Odette, Steven Zinkleen Limba Engleză Hardback – 15 aug 2019
Led by the multi-award winning editorial team of G. Robert Odette (UCSB) and Steven J. Zinkle (UTK/ORNL) and with contributions from leaders of each alloy discipline, Structural Alloys for Nuclear Energy Applications aids the next generation of researchers and industry staff developing and maintaining steels, nickel-base alloys, zirconium alloys, and other structural alloys in nuclear energy applications. This authoritative reference is a critical acquisition for institutions and individuals seeking state-of-the-art knowledge aided by the editors’ unique personal insight from decades of frontline research, engineering and management.
- Focuses on in-service irradiation, thermal, mechanical, and chemical performance capabilities.
- Covers the use of steels and other structural alloys in current fission technology, leading edge Generation-IV fission reactors, and future fusion power reactors.
- Provides a critical and comprehensive review of the state-of-the-art experimental knowledge base of reactor materials, for applications ranging from engineering safety and lifetime assessments to supporting the development of advanced computational models.
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Specificații
ISBN-13: 9780123970466
ISBN-10: 0123970466
Pagini: 673
Ilustrații: 110 illustrations (60 in full color)
Dimensiuni: 191 x 235 x 40 mm
Greutate: 1.36 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0123970466
Pagini: 673
Ilustrații: 110 illustrations (60 in full color)
Dimensiuni: 191 x 235 x 40 mm
Greutate: 1.36 kg
Editura: ELSEVIER SCIENCE
Public țintă
Nuclear materials researchers at research laboratories, academic institutions, nuclear waste management and fuel reprocessing organizationsCuprins
1. Overview of Structural Materials in Water-Cooled Fission Reactors
2. Overview of Reactor Systems and Operational Environments for Structural Materials in Gen-IV Fission Reactors
3. Overview of Reactor Systems and Operational Environments for Structural Materials in Fusion Reactors
4. Research Tools: Microstructure, Mechanical Properties, and Computational Thermodynamics
5. Radiation and Thermomechanical Degradation Effects in Reactor Structural Alloys
6. Corrosion Issues in Current and Next-Generation Nuclear Reactors
7. Zirconium Alloys for LWR Fuel Cladding and Core Internals
8. Austenitic Stainless Steels
9. Ni-Based Alloys for Reactor Internals and Steam Generator Applications
10. Low-Alloy Steels
11. Ferritic and Tempered Martensitic Steels
12. Nano-Oxide Dispersion-Strengthened Steels
13. Refractory Alloys: Vanadium, Niobium, Molybdenum, Tungsten
2. Overview of Reactor Systems and Operational Environments for Structural Materials in Gen-IV Fission Reactors
3. Overview of Reactor Systems and Operational Environments for Structural Materials in Fusion Reactors
4. Research Tools: Microstructure, Mechanical Properties, and Computational Thermodynamics
5. Radiation and Thermomechanical Degradation Effects in Reactor Structural Alloys
6. Corrosion Issues in Current and Next-Generation Nuclear Reactors
7. Zirconium Alloys for LWR Fuel Cladding and Core Internals
8. Austenitic Stainless Steels
9. Ni-Based Alloys for Reactor Internals and Steam Generator Applications
10. Low-Alloy Steels
11. Ferritic and Tempered Martensitic Steels
12. Nano-Oxide Dispersion-Strengthened Steels
13. Refractory Alloys: Vanadium, Niobium, Molybdenum, Tungsten