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Titlebook: Material Properties under Intensive Dynamic Loading; Mikhail V. Zhernokletov,Boris L. Glushak Book 2006 Springer-Verlag Berlin Heidelberg

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Estimation of Temperatures in Shock-compressed Transparent Material,l bodies comprising the system. A change in temperature of a body entails a change in almost all of its physical properties: length, volume, density, elastic properties, electrical conductivity, etc. The temperature measurement can be based on a change in any of the properties of the body, providing
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Determination of Detonation Parameters and Efficiency of Solid HE Explosion Products,ires versatile experimental research into high explosive properties, the explosion itself, and its thermomechanical effect on the environment. Knowledge pertaining to the mechanisms involved in the initiation and propagation of a detonation wave is needed for effective work in a number of important
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978-3-642-07194-2Springer-Verlag Berlin Heidelberg 2006
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Material Properties under Intensive Dynamic Loading978-3-540-36845-8Series ISSN 2197-9529 Series E-ISSN 2197-9537
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https://doi.org/10.1007/978-3-540-36845-8Explosion; continuum mechanics; detonation waves; equation of state; experiment; laser; material; mechanics
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Methods and Devices for Producing Intense Shock Loads,It is convenient to classify experimental devices according the energy source used to drive shock loads. In this approach, they can be subdivided into a number of principal groups:
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Dynamic Strength of Materials,shearstrength) are based on the concepts of the nature of motion of a material possessing strength and the features of high-rate deformation discussed in Chap. 1. These methods are briefly described below. Additional information on this topic is available to the reader in monographs [1–3], review [4], and the original papers cited in [1–4].
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Determination of Detonation Parameters and Efficiency of Solid HE Explosion Products,ires versatile experimental research into high explosive properties, the explosion itself, and its thermomechanical effect on the environment. Knowledge pertaining to the mechanisms involved in the initiation and propagation of a detonation wave is needed for effective work in a number of important practical areas, such as:
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