Metals Challenged by Neutron and Synchrotron Radiation

Neutron and Synchrotron radiation methods have matured to become powerful techniques for the study of a vast range of materials, including metals. The characterization methods comprise the categories of diffraction, spectroscopy and imaging, which themselves can alter greatly in detail, to include h...

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Huvudupphov: Klaus-Dieter Liss (Ed.)
Materialtyp: Online
Språk:engelska
Utgiven: MDPI - Multidisciplinary Digital Publishing Institute 2021
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author Klaus-Dieter Liss (Ed.)
author_browse Klaus-Dieter Liss (Ed.)
author_facet Klaus-Dieter Liss (Ed.)
author_sort Klaus-Dieter Liss (Ed.)
collection Directory of Open Access Books
description Neutron and Synchrotron radiation methods have matured to become powerful techniques for the study of a vast range of materials, including metals. The characterization methods comprise the categories of diffraction, spectroscopy and imaging, which themselves can alter greatly in detail, to include hundreds of variants, problems and sample environments. In a similar way, their applications to metals and hard condensed matter materials cover disciplines spanning engineering, physics, chemistry, materials science and their derivatives such as geology, energy storage, etc. … The present book, “Metals Challenged by Neutron and Synchrotron Radiation” is a first compilation in Metals of 20 original and review works on research utilizing or designing those state-of-the-art techniques at modern facilities. The Editorial reviews the context of and identifies thematic links between these papers, grouping them into five interwoven themes, namely Sintering Techniques and Microstructure Evolution, Titanium Aluminides and Titanium Alloys Under Extreme Conditions, Metallic Glass and Disordered Crystals, In Situ and Time-Resolved Response to Mechanical Load and Shock, and Thin Films and Layers. This book represents a good cross-section of the status quo of neutron and synchrotron radiation with respect to questions in the metallurgical field, which by far is not exhaustive. Nor are the methods and other materials, which motivated me to the creation of a new sister-journal, entitled Quantum Beam Science. With this, I would like to thank all authors, reviewers and contributors behind the scene for the creation of this work, presenting to you a piece of interesting reading and reference literature.
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spelling doab-20.500.12854ir-532592024-04-14T10:28:58Z Metals Challenged by Neutron and Synchrotron Radiation Klaus-Dieter Liss (Ed.) TN1-997 thermo-mechanical processing steel sintering techniques metallic glass in-situ studies titanium X-rays microstructure evolution high pressure high temperature thin films shock wave disorder Neutron scattering hydrogen storage. phase transformation extreme conditions titanium aluminide synchrotron radiation zirconium alloy thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TT Other technologies and applied sciences Neutron and Synchrotron radiation methods have matured to become powerful techniques for the study of a vast range of materials, including metals. The characterization methods comprise the categories of diffraction, spectroscopy and imaging, which themselves can alter greatly in detail, to include hundreds of variants, problems and sample environments. In a similar way, their applications to metals and hard condensed matter materials cover disciplines spanning engineering, physics, chemistry, materials science and their derivatives such as geology, energy storage, etc. … The present book, “Metals Challenged by Neutron and Synchrotron Radiation” is a first compilation in Metals of 20 original and review works on research utilizing or designing those state-of-the-art techniques at modern facilities. The Editorial reviews the context of and identifies thematic links between these papers, grouping them into five interwoven themes, namely Sintering Techniques and Microstructure Evolution, Titanium Aluminides and Titanium Alloys Under Extreme Conditions, Metallic Glass and Disordered Crystals, In Situ and Time-Resolved Response to Mechanical Load and Shock, and Thin Films and Layers. This book represents a good cross-section of the status quo of neutron and synchrotron radiation with respect to questions in the metallurgical field, which by far is not exhaustive. Nor are the methods and other materials, which motivated me to the creation of a new sister-journal, entitled Quantum Beam Science. With this, I would like to thank all authors, reviewers and contributors behind the scene for the creation of this work, presenting to you a piece of interesting reading and reference literature. 2021-02-11T19:22:56Z 2021-02-11T19:22:56Z 2018-02-08 13:10:36 2018 book 25366 9783038426790 9783038426806 https://directory.doabooks.org/handle/20.500.12854/53259 eng image/png Attribution-NonCommercial-NoDerivatives 4.0 International http://sci.fo/4f5 http://www.mdpi.com/books/pdfview/book/534 MDPI - Multidisciplinary Digital Publishing Institute 46cabcaa-dd94-4bfe-87b4-55023c1b36d0 9783038426790 9783038426806 288 open access
spellingShingle TN1-997
thermo-mechanical processing
steel
sintering techniques
metallic glass
in-situ studies
titanium
X-rays
microstructure evolution
high pressure
high temperature
thin films
shock wave
disorder
Neutron scattering
hydrogen storage.
phase transformation
extreme conditions
titanium aluminide
synchrotron radiation
zirconium alloy
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TT Other technologies and applied sciences
Klaus-Dieter Liss (Ed.)
Metals Challenged by Neutron and Synchrotron Radiation
title Metals Challenged by Neutron and Synchrotron Radiation
title_full Metals Challenged by Neutron and Synchrotron Radiation
title_fullStr Metals Challenged by Neutron and Synchrotron Radiation
title_full_unstemmed Metals Challenged by Neutron and Synchrotron Radiation
title_short Metals Challenged by Neutron and Synchrotron Radiation
title_sort metals challenged by neutron and synchrotron radiation
topic TN1-997
thermo-mechanical processing
steel
sintering techniques
metallic glass
in-situ studies
titanium
X-rays
microstructure evolution
high pressure
high temperature
thin films
shock wave
disorder
Neutron scattering
hydrogen storage.
phase transformation
extreme conditions
titanium aluminide
synchrotron radiation
zirconium alloy
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TT Other technologies and applied sciences
topic_facet TN1-997
thermo-mechanical processing
steel
sintering techniques
metallic glass
in-situ studies
titanium
X-rays
microstructure evolution
high pressure
high temperature
thin films
shock wave
disorder
Neutron scattering
hydrogen storage.
phase transformation
extreme conditions
titanium aluminide
synchrotron radiation
zirconium alloy
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TT Other technologies and applied sciences
url 25366
work_keys_str_mv AT klausdieterlissed metalschallengedbyneutronandsynchrotronradiation