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Energetic Materials

From Cradle to Grave

Parámetros

  • 482 páginas
  • 17 horas de lectura

Más información sobre el libro

This book provides an extensive overview of energetic materials, covering their synthesis, computational modeling, applications, degradation mechanisms, and environmental impacts. It highlights the shift in military focus from traditional explosive compounds, which are heat and shock sensitive, to insensitive munitions formulations like IMX and the PAX series. The text emphasizes the need for modern energetic compounds to be both shock- and heat-insensitive while maximizing energy output upon detonation. It discusses the potential of nanoinspired and co-crystallized materials as pathways for developing next-generation explosives. This authoritative work fills a significant gap in the literature by offering a thorough analysis of these materials. It also presents a valuable overview of energetic compounds, recent advancements in future formulations, the role of nanotechnology, environmental contamination and toxicity, assessments of munitions lethality, and the application of quantitative structure–activity relationships (QSAR) in the design of energetics, along with the fate and transport of munition compounds in the environment.

Compra de libros

Energetic Materials, Jeffery Steevens, Reddy Damavarapu, Manoj K. Shukla, Veera M. Boddu

Idioma
Publicado en
2017
Encuadernación
(Tapa dura)
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Título
Energetic Materials
Subtítulo
From Cradle to Grave
Idioma
Inglés
Editorial
Springer
Publicado en
2017
Formato
Tapa dura
Páginas
482
ISBN10
3319592068
ISBN13
9783319592060
Serie
Descripción
This book provides an extensive overview of energetic materials, covering their synthesis, computational modeling, applications, degradation mechanisms, and environmental impacts. It highlights the shift in military focus from traditional explosive compounds, which are heat and shock sensitive, to insensitive munitions formulations like IMX and the PAX series. The text emphasizes the need for modern energetic compounds to be both shock- and heat-insensitive while maximizing energy output upon detonation. It discusses the potential of nanoinspired and co-crystallized materials as pathways for developing next-generation explosives. This authoritative work fills a significant gap in the literature by offering a thorough analysis of these materials. It also presents a valuable overview of energetic compounds, recent advancements in future formulations, the role of nanotechnology, environmental contamination and toxicity, assessments of munitions lethality, and the application of quantitative structure–activity relationships (QSAR) in the design of energetics, along with the fate and transport of munition compounds in the environment.