Li et al., 2006 - Google Patents
Fracture behaviour of composite maritime T-jointsLi et al., 2006
View PDF- Document ID
- 2391866260588828010
- Author
- Li H
- Dharmawan F
- Herszberg I
- John S
- Publication year
- Publication venue
- Composite Structures
External Links
Snippet
This paper outlines a study on the fracture behaviour of a glass fibre reinforced polymer T- joint commonly used in composite marine vessels. Finite element analysis was conducted using the virtual crack closure technique (VCCT) to investigate the fracture behaviour of the …
- 239000002131 composite material 0 title abstract description 19
Classifications
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N2203/00—Investigating strength properties of solid materials by application of mechanical stress
- G01N2203/0058—Kind of property studied
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Li et al. | Fracture behaviour of composite maritime T-joints | |
Abir et al. | On the relationship between failure mechanism and compression after impact (CAI) strength in composites | |
Krzyżak et al. | Sandwich structured composites for aeronautics: methods of manufacturing affecting some mechanical properties | |
Al-Zubaidy et al. | Finite element modelling of CFRP/steel double strap joints subjected to dynamic tensile loadings | |
Atas et al. | An experimental investigation on the low velocity impact response of composite plates repaired by VARIM and hand lay-up processes | |
Shokrieh et al. | Influence of curved delamination front on toughness of multidirectional DCB specimens | |
Camanho et al. | On the relation between the mode I fracture toughness of a composite laminate and that of a 0 ply: Analytical model and experimental validation | |
Dharmawan et al. | Mixed mode fracture toughness of GFRP composites | |
Tsouvalis et al. | Experimental and numerical study of the fatigue behaviour of composite patch reinforced cracked steel plates | |
Mostafa et al. | Experimental, theoretical and numerical investigation of the flexural behaviour of the composite sandwich panels with PVC foam core | |
Nimje et al. | Interfacial failure analysis of functionally graded adhesively bonded double supported tee joint of laminated FRP composite plates | |
Manca et al. | Face/core debond fatigue crack growth characterization using the sandwich mixed mode bending specimen | |
Ghadirdokht et al. | Delamination R-curve behavior of curved composite laminates | |
Shams et al. | Effects of scratch damage on progressive failure of laminated carbon fiber/epoxy composites | |
Awad et al. | Experimental and numerical analysis of an innovative GFRP sandwich floor panel under point load | |
Vandellos et al. | Proposition of a framework for the development of a cohesive zone model adapted to carbon-fiber reinforced plastic laminated composites | |
Al-Azzawi et al. | A modified cohesive zone model for fatigue delamination in adhesive joints: numerical and experimental investigations | |
Kashfi et al. | A new overall nonlinear damage model for fiber metal laminates based on continuum damage mechanics | |
Al-Azzawi et al. | Buckling and postbuckling behaviour of Glare laminates containing splices and doublers. Part 2: Numerical modelling | |
Jahanian et al. | Influence of drilling on mode II delamination of E-glass/epoxy laminated composites | |
Hu et al. | Progressive damage behavior of composite L‐stiffened structures with initial delamination defects under uniaxial compression: experimental and numerical investigations | |
Arouche et al. | Effect of salt spray ageing on the fracture of composite-to-metal bonded joints | |
Alizadeh et al. | Experimental and numerical investigation of the fracture toughness of Glass/Vinylester composite laminates | |
Baran et al. | Assessment of failure and cohesive zone length in co-consolidated hybrid C/PEKK butt joint | |
Gaiotti et al. | An high order mixed interpolation tensorial components (MITC) shell element approach for modeling the buckling behavior of delaminated composites |