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Titlebook: Material Behavior Under High Stress and Ultrahigh Loading Rates; John Mescall,Volker Weiss Book 1983 Plenum Press, New York 1983 energy.me

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发表于 2025-3-21 17:59:09 | 显示全部楼层 |阅读模式
书目名称Material Behavior Under High Stress and Ultrahigh Loading Rates
编辑John Mescall,Volker Weiss
视频video
丛书名称Sagamore Army Materials Research Conference Proceedings
图书封面Titlebook: Material Behavior Under High Stress and Ultrahigh Loading Rates;  John Mescall,Volker Weiss Book 1983 Plenum Press, New York 1983 energy.me
描述The Army Materials and Mechanics Research Center in coopera­ tion with the Materials Science Group of the Department of Chemical Engineering and Materials Science of Syracuse University has been conducting the Annual Sagamore Army Materials Research Conference since 1954. The specific purpose of these conferences has been to bring together scientists and engineers from academic institutions, industry, and government who are uniquely qualified to explore in depth a subject of importance to the Department of Defense, the Army, and the scientific community. The proceedings of this conference, entitled MATERIAL BEHAVIOR UNDER HIGH STRESS AND ULTRAHIGH LOADING RATES, will be published in two parts. The topics covered in the present volume include dynamic plasticity, adiabatic shear/localized deformation, and dynamic fracture mechanics. Papers dealing with ordnance applica­ tions, projectile launch environment, and recent work-in-progress will appear as an AMMRC Technical Report and will have more limited distribution in accordance with recent Army guidelines. The Conference Chairmen are particularly grateful to the members of the Program Committee. We wish also to acknowledge the assist
出版日期Book 1983
关键词energy; mechanics; metals; microstructure; plasticity
版次1
doihttps://doi.org/10.1007/978-1-4613-3787-4
isbn_softcover978-1-4613-3789-8
isbn_ebook978-1-4613-3787-4
copyrightPlenum Press, New York 1983
The information of publication is updating

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发表于 2025-3-21 22:12:59 | 显示全部楼层
Scaling of Shear Band Fracture Processesom replica scaling. Here the model is outlined briefly, with emphasis on the nucleation process which is the main contributor to rate effects. Then a series of calculations are described in which a range of strain rates was applied. The number and size of bands and the strain to failure are examined as a function of strain rate.
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Strain Rate History Effects and Dislocation Substructure at High Strain Ratesnum are deformed at various strain rates. Observations by transmission electron microscopy are used to relate microscopic to macroscopic behavior. Results show that cell size influences the strain rate sensitivity and may be a cause of history effects.
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Dynamic Fracture Mechanics and its Applications to Material Behavior Under High Stress and Loading Rs. The objective of the paper is to help set the stage for the more detailed papers that follow in this volume, and to provide a point of departure for further work on fracture under high stress and loading rates.
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High Rate Deformation in the Field of a Crackin rate sensitivity and inertia on J. have been examined. The aim of this work is to examine those features of the plastic zone influential in determining the toughness, namely, the size of the process zone, and the crack tip opening displacement.
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Dynamic Crack Curving and Crack Branching micro-flaw connects with the crack tip, the crack is momentarily kinked or bifurcated. Figure 1 shows several attempts for a rapidly propagating crack to branch in a Homalite-100 plate. Also shown is a successful crack branching under presumably a favorable state of stress.
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