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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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书目名称Structure-Property Relationships under Extreme Dynamic Environments
副标题Shock Recovery Exper
编辑Cyril L. Williams
视频video
丛书名称Synthesis / SEM Lectures on Experimental Mechanics
图书封面Titlebook: Structure-Property Relationships under Extreme Dynamic Environments; Shock Recovery Exper Cyril L. Williams Book 2019 Springer Nature Switz
描述The inelastic response and residual mechanical properties acquired from most shock compressed solids are quite different from those acquired from quasi-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 those loaded quasi-statically to the same total strain. These observations suggest that the deformation mechanisms active during inelastic deformation under shock compression and quasi-static or moderate rates may be quite different. Therefore, the primary objective of this short book is to offer the reader a concise introduction on the Structure-Property Relationships concerning shock compressed metals and metallic alloys via shock recovery experiments..The first phase of the book, chapters 1 through 3 provides a brief historical perspective on the structure-property relationships as it pertains to shock compression science, then plastic deformation in shock compressed metals and metallic alloys is described in terms of deformation slip, defo
出版日期Book 2019
版次1
doihttps://doi.org/10.1007/978-3-031-79725-5
isbn_softcover978-3-031-79724-8
isbn_ebook978-3-031-79725-5Series ISSN 2577-6053 Series E-ISSN 2577-6088
issn_series 2577-6053
copyrightSpringer Nature Switzerland AG 2019
The information of publication is updating

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Shock Wave Propagation in Condensed Media, slower plastic wave (if the transient or shock wave in this case is not overdriven). The aim of this chapter is not to develop an exhaustive treatment of shock waves in condensed matter but to introduce pertinent subjects relating to the research at hand. For a more rigorous treatment of stress wav
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Deformation Mechanisms and Spall Failure,cies and vacancy clusters, interstitial atoms, dislocations and dislocation networks, stacking faults, deformation twins, to inter-metallic and second-phase particles, voids, and cracks. Therefore, the primary objective of this chapter is to elucidate the role of microstructure and microstructure ev
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developing countries. It is therefore critical that proper techniques be used to measure and manage the anti-nutritional effects they cause. The analysis of tannins remains highly problematic. Various chemical assays for hydrolysable tannins and condensed tannins are available. Most tannin-containin
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