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Titlebook: Structure-Property Relationships under Extreme Dynamic Environments; Shock Recovery Exper Cyril L. Williams Book 2019 Springer Nature Switz

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Cyril L. Williamson the subject, since the modern concept wasformulated in the late ‘50s and early ‘60s. The majority of the papersare in the nature of a handbook. All of them are self-contained, atvarious levels of difficulty. The Introduction surveys the main ideasand problems encountered in the logical investigat
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Shock Recovery Experiments,d rogue edge radial release waves can generate undesirable tensile stresses in the sample and, therefore, violate the uniaxial strain history essential for a successful shock recovery experiment. Therefore, all possible efforts must be utilized to trap rogue edge radial release waves emanating from lateral boundaries.
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Book 2019i-static or moderate strain rates. For instance, the residual hardness of many shock compressed metals has been found to be considerably lower than those loaded under quasi-static conditions to the same maximum stress. However, the residual hardness of shock compressed metals is much higher than tho
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Introduction,riments and end-state (recovery) shock experiments. Unlike time-resolved in-situ shock experiments, which are designed to acquire the velocity-time history of the material being investigated, shock recovery experiments were developed to augment the acquired time-resolved velocity history of the shoc
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Shock Wave Propagation in Condensed Media,f the impulse. Generally, the response of solids subjected to impulsive loads may be divided into three distinct regimes. For loading conditions that produce stresses below the dynamic yield point of the material, the material response is elastic. On the other hand, if the stresses generated are abo
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