Multiscale Phenomena in Plasticity: From Experiments to Phenomenology, Modelling and Materials Engineering:
A profusion of research and results on the mechanical behaviour of crystalline solids has followed the discovery of dislocations in the early thirties. This trend has been enhanced by the development of powerful experimental techniques. particularly X ray diffraction. transmission and scanning elect...
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
Dordrecht
Springer Netherlands
2000
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Schriftenreihe: | NATO Science Series, Series E: Applied Sciences
367 |
Schlagworte: | |
Online-Zugang: | UBT01 URL des Erstveröffentlichers |
Zusammenfassung: | A profusion of research and results on the mechanical behaviour of crystalline solids has followed the discovery of dislocations in the early thirties. This trend has been enhanced by the development of powerful experimental techniques. particularly X ray diffraction. transmission and scanning electron microscopy. microanalysis. The technological advancement has given rise to the study of various and complex materials. not to speak of those recently invented. whose mechanical properties need to be mastered. either for their lise as structural materials. or more simply for detenllining their fonnability processes. As is often the case this fast growth has been diverted both by the burial of early fundamental results which are rediscovered more or less accurately. and by the too fast publication of inaccurate results. which propagate widely. and are accepted without criticism. Examples of these statements abound. and will not be quoted here for the sake of dispassionateness. Understanding the mechanical properties of materials implies the use of various experimental techniques. combined with a good theoretical knowledge of elasticity. thermodynamics and solid state physics. The recent development of various computer techniques (simulation. ab initio calculations) has added to the difficulty of gathering the experimental information. and mastering the theoretical understanding. No laboratory is equipped with all the possible experimental settings. almost no scientist masters all this theoretical kno\vledge. Therefore. cooperation between scientists is needed more than even before |
Beschreibung: | 1 Online-Ressource (XI, 529 p. 177 illus) |
ISBN: | 9789401140485 |
DOI: | 10.1007/978-94-011-4048-5 |
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245 | 1 | 0 | |a Multiscale Phenomena in Plasticity: From Experiments to Phenomenology, Modelling and Materials Engineering |c edited by Joël Lépinoux, Dominique Mazière, Vassilis Pontikis, Georges Saada |
246 | 1 | 3 | |a Proceedings of the NATO Advanced Study Institute on Multiscale Phenomena in Plasticity: From Experiment to Phenomenology, held in Ouranoupolis, Greece, 8-19 September 1999 |
264 | 1 | |a Dordrecht |b Springer Netherlands |c 2000 | |
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490 | 0 | |a NATO Science Series, Series E: Applied Sciences |v 367 | |
520 | |a A profusion of research and results on the mechanical behaviour of crystalline solids has followed the discovery of dislocations in the early thirties. This trend has been enhanced by the development of powerful experimental techniques. particularly X ray diffraction. transmission and scanning electron microscopy. microanalysis. The technological advancement has given rise to the study of various and complex materials. not to speak of those recently invented. whose mechanical properties need to be mastered. either for their lise as structural materials. or more simply for detenllining their fonnability processes. As is often the case this fast growth has been diverted both by the burial of early fundamental results which are rediscovered more or less accurately. and by the too fast publication of inaccurate results. which propagate widely. and are accepted without criticism. Examples of these statements abound. and will not be quoted here for the sake of dispassionateness. Understanding the mechanical properties of materials implies the use of various experimental techniques. combined with a good theoretical knowledge of elasticity. thermodynamics and solid state physics. The recent development of various computer techniques (simulation. ab initio calculations) has added to the difficulty of gathering the experimental information. and mastering the theoretical understanding. No laboratory is equipped with all the possible experimental settings. almost no scientist masters all this theoretical kno\vledge. Therefore. cooperation between scientists is needed more than even before | ||
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spelling | Multiscale Phenomena in Plasticity: From Experiments to Phenomenology, Modelling and Materials Engineering edited by Joël Lépinoux, Dominique Mazière, Vassilis Pontikis, Georges Saada Proceedings of the NATO Advanced Study Institute on Multiscale Phenomena in Plasticity: From Experiment to Phenomenology, held in Ouranoupolis, Greece, 8-19 September 1999 Dordrecht Springer Netherlands 2000 1 Online-Ressource (XI, 529 p. 177 illus) txt rdacontent c rdamedia cr rdacarrier NATO Science Series, Series E: Applied Sciences 367 A profusion of research and results on the mechanical behaviour of crystalline solids has followed the discovery of dislocations in the early thirties. This trend has been enhanced by the development of powerful experimental techniques. particularly X ray diffraction. transmission and scanning electron microscopy. microanalysis. The technological advancement has given rise to the study of various and complex materials. not to speak of those recently invented. whose mechanical properties need to be mastered. either for their lise as structural materials. or more simply for detenllining their fonnability processes. As is often the case this fast growth has been diverted both by the burial of early fundamental results which are rediscovered more or less accurately. and by the too fast publication of inaccurate results. which propagate widely. and are accepted without criticism. Examples of these statements abound. and will not be quoted here for the sake of dispassionateness. Understanding the mechanical properties of materials implies the use of various experimental techniques. combined with a good theoretical knowledge of elasticity. thermodynamics and solid state physics. The recent development of various computer techniques (simulation. ab initio calculations) has added to the difficulty of gathering the experimental information. and mastering the theoretical understanding. No laboratory is equipped with all the possible experimental settings. almost no scientist masters all this theoretical kno\vledge. Therefore. cooperation between scientists is needed more than even before Materials Science Characterization and Evaluation of Materials Materials science Lépinoux, Joël edt Mazière, Dominique edt Pontikis, Vassilis edt Saada, Georges edt Erscheint auch als Druck-Ausgabe 9780792362524 https://doi.org/10.1007/978-94-011-4048-5 Verlag URL des Erstveröffentlichers Volltext |
spellingShingle | Multiscale Phenomena in Plasticity: From Experiments to Phenomenology, Modelling and Materials Engineering Materials Science Characterization and Evaluation of Materials Materials science |
title | Multiscale Phenomena in Plasticity: From Experiments to Phenomenology, Modelling and Materials Engineering |
title_alt | Proceedings of the NATO Advanced Study Institute on Multiscale Phenomena in Plasticity: From Experiment to Phenomenology, held in Ouranoupolis, Greece, 8-19 September 1999 |
title_auth | Multiscale Phenomena in Plasticity: From Experiments to Phenomenology, Modelling and Materials Engineering |
title_exact_search | Multiscale Phenomena in Plasticity: From Experiments to Phenomenology, Modelling and Materials Engineering |
title_full | Multiscale Phenomena in Plasticity: From Experiments to Phenomenology, Modelling and Materials Engineering edited by Joël Lépinoux, Dominique Mazière, Vassilis Pontikis, Georges Saada |
title_fullStr | Multiscale Phenomena in Plasticity: From Experiments to Phenomenology, Modelling and Materials Engineering edited by Joël Lépinoux, Dominique Mazière, Vassilis Pontikis, Georges Saada |
title_full_unstemmed | Multiscale Phenomena in Plasticity: From Experiments to Phenomenology, Modelling and Materials Engineering edited by Joël Lépinoux, Dominique Mazière, Vassilis Pontikis, Georges Saada |
title_short | Multiscale Phenomena in Plasticity: From Experiments to Phenomenology, Modelling and Materials Engineering |
title_sort | multiscale phenomena in plasticity from experiments to phenomenology modelling and materials engineering |
topic | Materials Science Characterization and Evaluation of Materials Materials science |
topic_facet | Materials Science Characterization and Evaluation of Materials Materials science |
url | https://doi.org/10.1007/978-94-011-4048-5 |
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