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Titlebook: Energetic Materials at Extreme Conditions; David I.A. Millar Book 2012 Springer-Verlag Berlin Heidelberg 2012 Energetic materials.Equation

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發(fā)表于 2025-3-25 04:53:21 | 只看該作者
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Thomas H. Maugh II,Jean L. Marxent conditions, with which is it has previously been confused. This has led to it being re-named the ε-form. Furthermore, an equation of state has been obtained for RDX up to a maximum pressure of 23?GPa. At no point during this study was a transition to δ-RDX observed, contrary to previous spectroscopic results.
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Book 2012 polymorphs obtained at high pressures and/or temperatures. The performance of energetic materials (pyrotechnics, propellants and explosives) can depend on a number of factors including sensitivity to detonation, detonation velocity, and chemical and thermal stability. Polymorphism and solid-state p
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Dormancy and the Control of Germination,not surprising therefore that a significant amount of research has been aimed at assessing its explosive performance, sensitivity and thermal properties. Furthermore spectroscopic and diffraction techniques have been used to explore the rich polymorphism of CL-20.
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Book 2012hase transitions may therefore have significant consequences for the performance and safety of energetic materials. In order to model the behaviour of these important materials effectively under operational conditions it is essential to obtain detailed structural information at a range of temperatures and pressures..
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發(fā)表于 2025-3-26 11:18:28 | 只看該作者
Introduction,tures in a reproducible manner upon stimulus by heat, impact, shock, spark, etc., generally with the release of large quantities of hot gaseous products. A chemical explosion arises when an exothermic transformation occurs over an extremely short timescale (typically <0.01?s). Due to the speed of th
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