Improved cohesive zone model: integrating strain rate, plastic strain, variable damping, and enhanced constitutive law for fracture propagation
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanics of Materials,Modeling and Simulation,Computational Mechanics
Link
https://link.springer.com/content/pdf/10.1007/s10704-023-00723-w.pdf
Reference46 articles.
1. Abrate S, Ferrero JF, Navarro P (2015) Cohesive zone models and impact damage predictions for composite structures. Meccanica 50(10):2587–2620
2. Alfano G, Crisfield M (2001) Finite element interface models for the delamination analysis of laminated composites: mechanical and computational issues. Int J Numer Meth Eng 50(7):1701–1736
3. Barenblatt GI (1959) The formation of equilibrium cracks during brittle fracture. General ideas and hypotheses. Axially-symmetric cracks. J Appl Math Mech 23(3):622–636
4. Blal N, Daridon L, Monerie Y, Pagano S (2013) Micromechanical-based criteria for the calibration of cohesive zone parameters. J Comput Appl Math 246:206–214
5. Bobaru F, Zhang G (2015) Why do cracks branch? A peridynamic investigation of dynamic brittle fracture. Int J Fract 196:59–98
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3. Assessing critical fracture energy in mode I for bonded composite joints: A numerical–experimental approach with uncertainty analysis;Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications;2024-02-09
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