An experimental data reduction method for the Mixed Mode Bending test based on the J-integral approach
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- Type
- article
- Published
- 2015-09-29
- Cited by
- 68
- References
- 36
- OpenAlex
- https://openalex.org/W603840001
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:136627788
Keywords
Materials science, Fracture toughness, Bending, Fracture (geology), Composite material
References
- Progressive Damage Analysis of Bonded Composite Joints
- A Mixed-Mode Bending Apparatus for Delamination Testing
- ONSET OF FAST CRACK PROPAGATION IN HIGH STRENGTH STEEL AND ALUMINUM ALLOYS
- Fundamentals of the Phenomenological Theory of Nonlinear Fracture Mechanics
- Micromechanical model of cross-over fibre bridging – Prediction of mixed mode bridging laws
- Assessment of energy dissipation during mixed-mode delamination growth using cohesive zone models
- Large Displacement Aspects on Fracture Testing with Double Cantilever Beam Specimens
- Strength scaling of adhesive joints in polymer–matrix composites
- Delamination R-curve phenomena due to damage
- Energy release rate and mode-mixity of adhesive joint specimens
- On the Analysis and Design of the End Notched Flexure (ENF) Specimen for Mode II Testing
- Shear behaviour of adhesive layers
- Associated path independent J-integrals for separating mixed modes
- Redesign of the Mixed-Mode Bending Delamination Test to Reduce Nonlinear Effects
- Determination of the J integral for laminated double cantilever beam specimens: The curvature approach
- Alternative test method for interlaminar fracture toughness of composites
- DCB-specimen loaded with uneven bending moments
- Effects of constitutive parameters on the accuracy of measured fracture energy using the DCB-specimen
- Characterizing delamination of fibre composites by mixed mode cohesive laws
- Constitutive behaviour of mixed mode loaded adhesive layer
Cited by
- On the validity of linear elastic fracture mechanics methods to measure the fracture toughness of adhesive joints
- Measurement of interlaminar fracture properties of composites using the J-integral method
- Experimental characterization and numerical simulation of composite adhesive joints using the cohesive zone model approach
- An experimental analysis of the fracture behavior of composite bonded joints in terms of cohesive laws
- A data reduction method based on the J-integral to obtain the interlaminar fracture toughness in a mode II end-loaded split (ELS) test
- Delamination growth behavior of a woven E-glass/bismaleimide composite in seawater environment
- Progressive failure analysis of DCB bonded joints using a new elastic foundation coupled with a cohesive damage model
- Long-term durability of bismaleimide composite in marine environments
- Investigating the influence of material non-linearity in the fracture properties of ductile adhesives submitted to mixed-mode loading
- Studies on Traction Separation Relations in Fracture of Layered Composites
- Cohesive zone modeling for mode I facesheet to core delamination of sandwich panels accounting for fiber bridging
- Constitutive Modeling of the Facesheet to Core Interface in Honeycomb Sandwich Panels Subject to Mode I Delamination
- Inverse end-loaded-split test analysis effect of small scale yielding
- A new analytical generalization of the J and G-theta integrals for planar cracks in a three-dimensional medium
- Caracterización de la tenacidad a la fractura de materiales compuestos mediante medida de energía crítica por termografía infrarroja
- The applicability of J-integral approach in the determination of mixed-mode fracture energy in a ductile adhesive
- A Direct Method for the Assessment of Cohesive Zone Models for Thin Adhesive Layers Loaded in Mode I, Mode II, and Mixed-Mode I/II
- Mixed-mode crack propagation tests of composite bonded joints using a dual-actuator load frame – Constant and variable GII/GI conditions
- On the validity of LEFM methods to investigate the fracture behavior of angle-ply laminates
- Towards a consensus on mode II adhesive fracture testing: Experimental study
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