An incremental elastic-plastic cohesive constitutive model with considering damage
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Engineering,General Materials Science
Link
https://link.springer.com/content/pdf/10.1007/s11431-022-2314-3.pdf
Reference41 articles.
1. Tan W, Martínez-Pañeda E. Phase field predictions of microscopic fracture and R-curve behaviour of fibre-reinforced composites. Compos Sci Tech, 2021, 202: 108539
2. Yang L, Yan Y, Liu Y J, et al. Microscopic failure mechanisms of fiber-reinforced polymer composites under transverse tension and compression. Compos Sci Tech, 2012, 72: 1818–1825
3. Guo F L, Huang P, Li Y Q, et al. Multiscale modeling of mechanical behaviors of carbon fiber reinforced epoxy composites subjected to hygrothermal aging. Compos Struct, 2021, 256: 113098
4. Sharma A, Daggumati S. Computational micromechanical modeling of transverse tensile damage behavior in unidirectional glass fiber-reinforced plastic composite plies: Ductile versus brittle fracture mechanics approach. Int J Damage Mech, 2020, 29: 943–964
5. González C, LLorca J. Mechanical behavior of unidirectional fiber-reinforced polymers under transverse compression: Microscopic mechanisms and modeling. Compos Sci Tech, 2007, 67: 2795–2806
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