bibtype J - Journal Article
ARLID 0080955
utime 20240103184020.7
mtime 20070416235959.9
title (primary) (eng) Statistically based continuum model of dislocation cell structure formation
specification
page_count 14 s.
serial
ARLID cav_un_epca*0257971
ISSN 1098-0121
title Physical Review. B
volume_id 75
volume 2 (2007)
page_num 1-14
title (cze) Spojity model formovani diclokacni struktury zalozeny na statistice
keyword dislocation
keyword dissipation
author (primary)
ARLID cav_un_auth*0044342
name1 Kratochvíl
name2 J.
country CZ
author
ARLID cav_un_auth*0101142
name1 Kružík
name2 Martin
institution UTIA-B
full_dept Department of Decision Making Theory
fullinstit Ústav teorie informace a automatizace AV ČR, v. v. i.
author
ARLID cav_un_auth*0226808
name1 Sedláček
name2 R.
country DE
COSATI 20K
COSATI 12A
cas_special
project
project_id IAA1075402
agency GA AV ČR
ARLID cav_un_auth*0012788
research CEZ:AV0Z10750506
abstract (eng) Within the framework of continuum mechanics, the formation of misoriented dislocation cells can be explained as a result of a trend to reduce the energetically costly hardening in multi slip by decreasing locally the number of active slip systems. In the standard (local) approach, the continuum theory predicts an infinitesimally small cell size. The finite size of real cells is controlled by short-range dislocation interactions: (i) the self-force of the curved dislocations, (ii) the short-range correlation among dislocations. Within the proposed framework the cell size is a result of a compromise: bulk strain and dissipative energy tends to decrease the size, while short-range interactions restrict that tendency. In the present paper the non-local effects are analyzed using a model of an infinite crystal deformed by symmetric double slip, where plastic strain is carried by straight, parallel, edge dislocations. The constitutive equations of the model are derived from the statistical mechanics description of collective behavior of dislocations. The non-local effects are represented by the short-range correlation among dislocations.
abstract (cze) V rámci mechaniky kontinua se dá vznik dislokačních buněk vysvětlit jako snaha obejít energeticky náročné zpevnění v multiskluzu pomocí redukce aktivních skluzových systemů. Članek analyzuje nelokální interakce, které se podílejí na vzniku dislokací. Kostitutivní rovnice byly odvozeny ze statistické mechaniky.
reportyear 2007
RIV BM
permalink http://hdl.handle.net/11104/0144972
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arlyear 2007
mrcbU63 cav_un_epca*0257971 Physical Review. B 1098-0121 Roč. 75 č. 2 2007 1 14