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Single-crystal gradient plasticity with an accumulated plastic slip PDF

278 Pages·2016·8.62 MB·English
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Karlsruher Institut für Technologie Schriftenreihe Kontinuumsmechanik im Maschinenbau 9 Eric Bayerschen Single-crystal gradient plasticity with an accumulated plastic slip: y t ci Theory and applications ti s a pl t n e di a r g al t s y r c - e gl n Si n e h c s r e y a B E. Eric Bayerschen Single-crystal gradient plasticity with an accumulated plastic slip: Theory and applications Schriftenreihe Kontinuumsmechanik im Maschinenbau Band 9 Karlsruher Institut für Technologie (KIT) Institut für Technische Mechanik Bereich Kontinuumsmechanik Hrsg. Prof. Dr.-Ing. habil. Thomas Böhlke Eine Übersicht aller bisher in dieser Schriftenreihe erschienenen Bände finden Sie am Ende des Buchs. Single-crystal gradient plasticity with an accumulated plastic slip: Theory and applications by Eric Bayerschen Dissertation, Karlsruher Institut für Technologie (KIT) Fakultät für Maschinenbau Tag der mündlichen Prüfung: 25. Oktober 2016 Impressum Karlsruher Institut für Technologie (KIT) KIT Scientific Publishing Straße am Forum 2 D-76131 Karlsruhe KIT Scientific Publishing is a registered trademark of Karlsruhe Institute of Technology. Reprint using the book cover is not allowed. www.ksp.kit.edu This document – excluding the cover, pictures and graphs – is licensed under the Creative Commons Attribution-Share Alike 3.0 DE License (CC BY-SA 3.0 DE): http://creativecommons.org/licenses/by-sa/3.0/de/ The cover page is licensed under the Creative Commons Attribution-No Derivatives 3.0 DE License (CC BY-ND 3.0 DE): http://creativecommons.org/licenses/by-nd/3.0/de/ Print on Demand 2017 ISSN 2192-693X ISBN 978-3-7315-0606-5 DOI 10.5445/KSP/1000062103 Single-crystal gradient plasticity with an accumulated plastic slip: Theory and applications ZurErlangungdesakademischenGrades Doktor derIngenieurwissenschaften derFakultätfürMaschinenbau KarlsruherInstitutfürTechnologie(KIT) genehmigte Dissertation von Dipl.-Ing.EricBayerschen TagdermündlichenPrüfung: 25.10.2016 Hauptreferent: Prof.Dr.-Ing.ThomasBöhlke Korreferent: Prof.Dr.B.DayaReddy

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cally efficient gradient plasticity theory is implemented using the finite element method 3.2 Gradient-extended principle of virtual power, resulting field equations and .. lor (1934) (see also Hirth, 1985, for a brief overview on the history of .. It includes balance equations governing the mi- cr
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