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Nuclear Materials Science (Second Edition)
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05 November 2020

Nuclear reactors, whether fission or fusion, are environments which provide enormous challenges to materials: the combination of high temperatures, intense radiation, and a variety of chemical interactions has led to many innovative solutions. This textbook gives an excellent overview of the problems and how they have been overcome whilst keeping in mind the maxim ‘neutrons are precious, don’t waste them.’ The feature that distinguishes these environments from other situations in which high-performance materials are required is nuclear radiation, so the book begins with two chapters on atomic physics and on the damage caused by radiation. The materials for fuel and cladding are discussed next, with clear arguments for favouring oxide over metal fuel and the compromises that have to be made when designing a cladding that has a suitable melting point, is chemically compatible with the fuel and coolant, is manufacturable, mechanically stable and has acceptable neutron absorption. This is a good overview of the problems encountered in designing materials for use in nuclear reactors.
A.H. Harker, Contemporary Physics, June 2022
— A. H. Harker
Karl Whittle obtained his undergraduate degree at the University of Kent, a masters from the University of Aberdeen, and PhD from The Open University. After completing his PhD he undertook postdoctoral appointments at the universities of Bristol, Cambridge and Sheffield, researching amorphous materials, and nuclear waste options. He then moved to the Australia Nuclear Science and Technology Organisation (ANSTO), where he led research into the effects on materials of radiation damage. In 2012 he moved back the UK as a Senior Lecturer in nuclear materials at the University of Sheffield, and in 2015 he moved to the University of Liverpool as the Chair in nuclear engineering. Over the years he has developed international research links, and has active collaborations across the world.
Acknowledgements
Author Biography
Introduction
1 Atomic Considerations
2 Radiation Damage
3 Nuclear Fuel Part I - Fuel and Cladding
4 Nuclear Fuel Part II - Operational Effects
5 Evolution of Reactor Technologies
6 The challenge for materials in new reactor designs
7 The Challenges of Nuclear Waste
8 Materials and Nuclear Fusion
9 Mistakes Made and Lessons Learnt
10 Materials Characterisation