Buch, Englisch, 400 Seiten
Buch, Englisch, 400 Seiten
ISBN: 978-1-394-20441-0
Verlag: John Wiley & Sons Inc
Completely revised coverage of nuclear materials from crystal structure to reactor applications
Now in its Second Edition, An Introduction to Nuclear Materials is completely revised and expanded with new chapters on phase diagrams of nuclear materials and accident tolerant fuels. Written by K. Linga Murty and Indrajit Charit, two leading nuclear engineering professors, this classroom-tested textbook systematically builds from fundamental crystal structures through dislocation theory to radiation damage and radiation effects in reactor components.
An Introduction to Nuclear Materials covers reactor system designs, materials applications across fuel rod assemblies, steam generators, and piping. Structure-property correlations are established throughout. Materials selection and life prediction methodologies address creep, corrosion, and other degradation mechanisms. Advanced topics include materials for space nuclear reactors and fusion reactors. An appendix compiles materials property data for reactor applications.
Readers will also find: - New chapters on phase diagrams of nuclear materials and accident tolerant fuels added to this completely revised Second Edition
- Chapter summaries, recommended further reading, and end-of-chapter problems designed to reinforce and solidify acquired knowledge
- Systematic progression from fundamental crystal structures to dislocation theory, radiation damage, and radiation effects in reactor materials
- Materials selection and life prediction methodologies for nuclear reactors addressing creep, corrosion, and other degradation mechanisms
- Coverage of advanced topics including materials for space nuclear reactors, fusion reactors, and compiled property data appendix
An Introduction to Nuclear Materials serves graduate and undergraduate students in nuclear engineering, nuclear physicists, and engineers in power technology who require a materials science perspective on reactor design. Its classroom-tested approach and structure-property emphasis make it a reliable reference for both academic study and professional practice in the nuclear industry.
Autoren/Hrsg.
Fachgebiete
Weitere Infos & Material
1 Overview of Nuclear Reactor Systems and Fundamentals
1.1 Introduction
1.2 Types of Nuclear Energy
1.3 Neutron Classification
1.4 Neutron Sources
1.5 Interactions of Neutrons with Matter
1.6 Definition of Neutron Flux and Fluence
1.7 Neutron Cross Section
1.8 Types of Reactors
1.9 Materials Selection Criteria
1.10 Summary
2 Fundamental Nature of Materials
2.1 Crystal Structure
2.2 Crystal Defects
2.3 Diffusion
2.4 Phase Diagrams
2.5 Summary
3 Fundamentals of Radiation Damage
3.1 Displacement Threshold
3.2 Radiation Damage Models
3.3 Summary
4 Dislocation Theory
4.1 Deformation by Slip in Single Crystals
4.2 Other Dislocation Characteristics
4.3 Dislocations in Different Crystal Structures
4.4 Strengthening (Hardening) Mechanisms
4.5 Summary
5 Properties of Materials
5.1 Mechanical Properties
5.2 Thermophysical Properties
5.3 Corrosion
5.4 Summary
6 Radiation Effects on Materials
6.1 Microstructural Changes
6.2 Mechanical Properties
6.3 Radiation Effects on Physical Properties
6.4 Radiation Effects on Corrosion Properties
6.5 Summary
7 Nuclear Fuels
7.1 Introduction
7.2 Metallic Fuels
7.3 Ceramic Fuels
7.4 Accident Tolerant Fuels
7.5 Summary




