Report on the Effect of Nuclear Radiation on Metallic Fuel Materials

Report on the Effect of Nuclear Radiation on Metallic Fuel Materials
Title Report on the Effect of Nuclear Radiation on Metallic Fuel Materials PDF eBook
Author A. A. Bauėr
Publisher
Pages 128
Release 1963
Genre Metal-base fuel
ISBN

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The Effect of Nuclear Radiation on Metallic Fuel Materials

The Effect of Nuclear Radiation on Metallic Fuel Materials
Title The Effect of Nuclear Radiation on Metallic Fuel Materials PDF eBook
Author A. A. Bauėr
Publisher
Pages 150
Release 1963
Genre Nuclear fuel elements
ISBN

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The Effect of Nuclear Radiation on Ceramic Reactor-fuel Materials

The Effect of Nuclear Radiation on Ceramic Reactor-fuel Materials
Title The Effect of Nuclear Radiation on Ceramic Reactor-fuel Materials PDF eBook
Author James B. Melehan
Publisher
Pages 84
Release 1963
Genre Ceramics
ISBN

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This report presents state-of-the art information on the effects of nuclear radiation on ceramic reactor fuel materials that are being used or being considered for use in various types of reactors. The materials discussed include uranium oxides, uranium carbides, uranium mononitride, uranium silicides, plutonium oxide, and plutonium carbide. The report presents data in the form of tables and curves for physical damage incurred by the fuel materials as a result of their exposure to nuclear radiation.

The Effect of Nuclear Radiation on Structural Metals

The Effect of Nuclear Radiation on Structural Metals
Title The Effect of Nuclear Radiation on Structural Metals PDF eBook
Author Frederic R. Shober
Publisher
Pages 120
Release 1961
Genre Metals
ISBN

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The effect of fast-neutron (>1 Mev) irradiation on the mechanical properties of structural metals and alloys was studied. Although the yield strengths and ultimate tensile strengths are increased su stantially for most materials, the ductility suffers severe decreases. This report presents these changes in properties of several structural metals for a number of neutron exposures within the 1.0 x 10 to the 18th power to 5.0 x 10 to the 21st power n/sq cm range. Data summarizing these effects on several classes of materials such as carbon steels, low-alloy steels, stainless steels, Zr-base alloys, ni-base alloys, Al-base alloys, and Ta are given. Additional data which show the influence f irradiation temperatures and of post-irradiation annealing on the radiation-induced property changes are also given and discussed. Increases as great as 175% in yield strength, 100% in ultimate strength, and decreases of 80% in total elongation are reported for fast-neutron exposures as great as 5 10 to the 21st power n/sq cm. (Author).

Report on the Effect of Nuclear Radiation on Ceramic-coated-particle Reactor-fuel Materials

Report on the Effect of Nuclear Radiation on Ceramic-coated-particle Reactor-fuel Materials
Title Report on the Effect of Nuclear Radiation on Ceramic-coated-particle Reactor-fuel Materials PDF eBook
Author Harvey S. Rosenberg
Publisher
Pages 104
Release 1966
Genre Nuclear fuels
ISBN

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Effects of Radiation on Materials

Effects of Radiation on Materials
Title Effects of Radiation on Materials PDF eBook
Author Martin L. Grossbeck
Publisher ASTM International
Pages 767
Release 2004
Genre Materials
ISBN 0803134770

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Structural Materials for Generation IV Nuclear Reactors

Structural Materials for Generation IV Nuclear Reactors
Title Structural Materials for Generation IV Nuclear Reactors PDF eBook
Author Pascal Yvon
Publisher Woodhead Publishing
Pages 686
Release 2016-08-27
Genre Technology & Engineering
ISBN 0081009127

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Operating at a high level of fuel efficiency, safety, proliferation-resistance, sustainability and cost, generation IV nuclear reactors promise enhanced features to an energy resource which is already seen as an outstanding source of reliable base load power. The performance and reliability of materials when subjected to the higher neutron doses and extremely corrosive higher temperature environments that will be found in generation IV nuclear reactors are essential areas of study, as key considerations for the successful development of generation IV reactors are suitable structural materials for both in-core and out-of-core applications. Structural Materials for Generation IV Nuclear Reactors explores the current state-of-the art in these areas. Part One reviews the materials, requirements and challenges in generation IV systems. Part Two presents the core materials with chapters on irradiation resistant austenitic steels, ODS/FM steels and refractory metals amongst others. Part Three looks at out-of-core materials. Structural Materials for Generation IV Nuclear Reactors is an essential reference text for professional scientists, engineers and postgraduate researchers involved in the development of generation IV nuclear reactors. - Introduces the higher neutron doses and extremely corrosive higher temperature environments that will be found in generation IV nuclear reactors and implications for structural materials - Contains chapters on the key core and out-of-core materials, from steels to advanced micro-laminates - Written by an expert in that particular area