Modeling and Numerical Simulation of Material Science

Modeling and Numerical Simulation of Material Science

ISSN Print: 2164-5345
ISSN Online: 2164-5353
www.scirp.org/journal/mnsms
E-mail: mnsms@scirp.org
"Theoretical and Numerical Comparison of Limit Point Bifurcation and Maximum Force Criteria. Application to the Prediction of Diffuse Necking"
written by Guillaume Altmeyer,
published by Modeling and Numerical Simulation of Material Science, Vol.3 No.1, 2013
has been cited by the following article(s):
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[1] Probability and Mechanics of Ship Collision and Grounding
2019
[2] Investigation of tensile plastic instability and necking for AL2024T3 aluminum and S235JR steel alloys
2019
[3] The limit diagram under hot sheet metal forming. A review of constitutive models of material, viscous failure criteria and standard tests
2018
[4] Диаграмма предельных деформаций при горячей листовой штамповке металлов. Обзор моделей материала, критериев вязкого разрушения и …
2018
[5] The limit diagram under hot sheet metal forming: a review of constitutive models of material, viscous failure criteria and standard tests
Journal of Samara State Technical University: Series Physical and Mathematical Sciences, 2017
[6] Диаграмма предельных деформаций при горячей листовой штамповке металлов: обзор моделей материала, критериев вязкого разрушения и …
2017
[7] On the accuracy of fracture estimation in collision analysis of ship and offshore structures
Marine Structures, 2015
[8] Overview of the theoretical relations between necking and strain localization criteria.
Congrès fran?ais de mécanique (21 ; 2013 ; Bordeaux (Gironde)), 2013
[9] Overview of the theoretical relations between necking and strain localization criteria
SAM, the Arts et Métiers ParisTech open access repository, 2013
[10] Relations théoriques entre les critères d'instabilités plastiques
21ème Congrès Fran?ais de Mécanique, 2013
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