Developing and testing novel energetic materials is an expanding branch of the materials sciences. Reaction, detonation or explosion of such materials invariably produce extremely high pr… mais…
Developing and testing novel energetic materials is an expanding branch of the materials sciences. Reaction, detonation or explosion of such materials invariably produce extremely high pressures and temperatures. To study the equations-of-state (EOS) of energetic materials in extreme regimes both shock and static high pressure studies are required. The present volume is an introduction and review of theoretical, experimental and numerical aspects of static compression of such materials. Chapter 1 introduces the basic experimental tool, the diamond anvil pressure cell and the observational techniques used with it such as optical microscopy, infrared spectrometry and x-ray diffraction. Chapter 2 outlines the principles of high-nitrogen energetic materials synthesis. Chapters 3 and 4, examine and compare various EOS formalisms and data fitting for crystalline and non-crystalline materials, respectively. Chapter 5 details the reaction kinetics of detonating energetic materials. Chapter 6 investigates the interplay between static and dynamic (shock) studies. Finally, Chapters 7 and 8 introduce numerical simulations: molecular dynamics of energetic materials under either hydrostatic or uni-axial stress and ab-inito treatments of defects in crystalline materials. This timely volume meets the growing demand for a state-of-the art introduction and review of the most relevant aspects of static compression of energetic materials and will be a valuable reference to researchers and scientists working in academic, industrial and governmental research laboratories. Books > Chemistry eBook, Springer Shop<
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L. Davison; Suhithi M. Peiris; Y. Horie; Gasper J. Piermarini; Suhithi M. Peiris; Gasper J. Piermarini: Static Compression of Energetic Materials - primeira edição
Developing and testing novel energetic materials is an expanding branch of the materials sciences. Reaction, detonation or explosion of such materials invariably produce extremely high pr… mais…
Developing and testing novel energetic materials is an expanding branch of the materials sciences. Reaction, detonation or explosion of such materials invariably produce extremely high pressures and temperatures. To study the equations-of-state (EOS) of energetic materials in extreme regimes both shock and static high pressure studies are required. The present volume is an introduction and review of theoretical, experimental and numerical aspects of static compression of such materials. Chapter 1 introduces the basic experimental tool, the diamond anvil pressure cell and the observational techniques used with it such as optical microscopy, infrared spectrometry and x-ray diffraction. Chapter 2 outlines the principles of high-nitrogen energetic materials synthesis. Chapters 3 and 4, examine and compare various EOS formalisms and data fitting for crystalline and non-crystalline materials, respectively. Chapter 5 details the reaction kinetics of detonating energetic materials. Chapter 6 investigates the interplay between static and dynamic (shock) studies. Finally, Chapters 7 and 8 introduce numerical simulations: molecular dynamics of energetic materials under either hydrostatic or uni-axial stress and ab-inito treatments of defects in crystalline materials. This timely volume meets the growing demand for a state-of-the art introduction and review of the most relevant aspects of static compression of energetic materials and will be a valuable reference to researchers and scientists working in academic, industrial and governmental research laboratories. Books > Chemistry eBook, Springer Shop<
new in stock. Custos de envio:zzgl. Versandkosten., mais custos de envio
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Dados detalhados do livro - Static Compression of Energetic Materials
EAN (ISBN-13): 9783540681519 ISBN (ISBN-10): 3540681515 Ano de publicação: 2009 Editor/Editora: Springer Berlin Heidelberg 330 Páginas Língua: eng/Englisch
Livro na base de dados desde 2010-09-01T06:11:26+01:00 (Lisbon) Página de detalhes modificada pela última vez em 2023-05-25T21:48:15+01:00 (Lisbon) Número ISBN/EAN: 9783540681519
Número ISBN - Ortografia alternativa: 3-540-68151-5, 978-3-540-68151-9 Ortografia alternativa e termos de pesquisa relacionados: Autor do livro: gasper, horie, isa grüber, gruber, ulrich franz Título do livro: phenomena, materials
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