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Titlebook: Dislocation Dynamics During Plastic Deformation; Ulrich Messerschmidt Book 2010 Springer-Verlag Berlin Heidelberg 2010 Dislocation.In-situ

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書(shū)目名稱(chēng)Dislocation Dynamics During Plastic Deformation
編輯Ulrich Messerschmidt
視頻videohttp://file.papertrans.cn/282/281437/281437.mp4
概述Covers the major achievements in the understanding of the dynamics and the formation of dislocations in solid materials during the plastic deformation.A special feature are the excellent TEM micrograp
叢書(shū)名稱(chēng)Springer Series in Materials Science
圖書(shū)封面Titlebook: Dislocation Dynamics During Plastic Deformation;  Ulrich Messerschmidt Book 2010 Springer-Verlag Berlin Heidelberg 2010 Dislocation.In-situ
描述The book gives an overview of the dynamic behavior of dislocations and its relation to plastic deformation. It introduces the general properties of dislocations and treats the dislocation dynamics in some detail. Finally, examples are described of the processes in different classes of materials, i.e. semiconductors, ceramics, metals, intermetallic materials, and quasicrystals. The processes are illustrated by many electron micrographs of dislocations under stress and by video clips taken during in situ straining experiments in a high-voltage electron microscope showing moving dislocations. Thus, the users of the book also obtain an immediate impression and understanding of dislocation dynamics.
出版日期Book 2010
關(guān)鍵詞Dislocation; In-situ electron microscopy; Intermetallic alloys; Plastic deformation; Quasicrystals; alloy
版次1
doihttps://doi.org/10.1007/978-3-642-03177-9
isbn_softcover978-3-642-26357-6
isbn_ebook978-3-642-03177-9Series ISSN 0933-033X Series E-ISSN 2196-2812
issn_series 0933-033X
copyrightSpringer-Verlag Berlin Heidelberg 2010
The information of publication is updating

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Dislocation Motionhe forces on the dislocation segments, which vary in space and time, and the spectrum of barriers to the dislocation motion. The barriers are very different with respect to their geometric extension and to their interaction strength, ranging from arrangements of other dislocations with long-range st
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Ceramic Single Crystalsing to the carbides or nitrides with strong covalent bonding. Correspondingly, the Peierls stress and the double-kink formation energies are very different. On the one hand, these quantities are low in the alkali halides so that the Peierls mechanism controls the dislocation mobility and the flow st
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Metallic Alloysre low, the dislocation motion can be described by the theory of localized obstacles (Sect. 4.5). In the special case where the hardening mechanism inside the particles consists in the formation of antiphase boundaries, as in Al–Li, the matrix dislocations may move in pairs. Impenetrable obstacles l
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Conclusionshing bonds on the atomic level. These problems are tackled by molecular dynamics simulations using semi-heuristic methods. Ab initio calculations are still rare and, for more complex problems, they suffer from the still low number of atoms involved. There is still poor microscopic experimental veri
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