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Void-nucleation vs void-growth controlled plastic flow localization in materials with nonuniform particle distributions

✍ Scribed by Y. Huang; A. Chandra; N.Y. Li


Publisher
Elsevier Science
Year
1998
Tongue
English
Weight
754 KB
Volume
35
Category
Article
ISSN
0020-7683

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✦ Synopsis


Plastic flow localization may occur after significant void growth or immediately after void nucleation. In the present work, a model is developed to investigate the role of nonuniform particle distributions (e.g. random distribution, clusters) in plastic flow localization. A parameter is developed to quantitatively determine whether localization is predominantly controlled by voidnucleation or by void-growth. It is established that, for large clusters of particles, localization is more likely to be initiated by void nucleation, while it is dominated by void growth for small clusters. Both critical strain and stress void-nucleation criteria are investigated. It is observed that voidnucleation governed by the critical stress criterion initiates plastic flow localization at a much lower strain level than that governed by the critical strain criterion.