Bert, 1979 - Google Patents
Mathematical Modeling and Micromechanics of Fiber-Reinforced Bimodulus Composite Materials.Bert, 1979
View PDF- Document ID
- 632607334189318446
- Author
- Bert C
- Publication year
External Links
Snippet
In Part I of this report are described and evaluated various mathematical constitutive equations proposed to model the mechanical behavior of fiber-reinforced composite materials having different compliances in tension and compression. Five different …
- 239000002131 composite material 0 title description 53
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Tan | Stress concentrations in laminated composites | |
Chang et al. | Damage tolerance of laminated composites containing an open hole and subjected to compressive loadings: Part I—Analysis | |
Soden et al. | Biaxial test results for strength and deformation of a range of E-glass and carbon fibre reinforced composite laminates: failure exercise benchmark data | |
Camponeschi Jr | Compression of composite materials: A review | |
Zweben | Tensile strength of hybrid composites | |
Evans et al. | The design, matching and manufacture of auxetic carbon fibre laminates | |
Johnston | A new generation of epoxy composites for primary structural applications: materials and mechanics | |
Bert | Composite Materials: A Survey of the Damping Capacity of Fiber-Reinforced Composites. | |
Zhu et al. | A progressive FE failure model for laminates under biaxial loading | |
Mistry | Theoretical investigation into the effect of the winding angle of the fibres on the strength of filament wound GRP pipes subjected to combined external pressure and axial compression | |
Eckold et al. | Lamination theory in the prediction of failure envelopes for filament wound materials subjected to biaxial loading | |
Banat | Load-carrying capacity of the GFRP and CFRP composite beams subjected to three-point bending test–numerical investigations. | |
Bert | Mathematical Modeling and Micromechanics of Fiber-Reinforced Bimodulus Composite Materials. | |
Tennyson et al. | Application of the cubic polynomial strength criterion to the failure analysis of composite materials | |
Gargiulo et al. | Prediction of failure envelopes of composite tubes subjected to biaxial loadings | |
Semlali Aouragh Hassani et al. | Modeling of damage evaluation and failure of laminated composite materials | |
Beckwith | Viscoelastic creep behavior of filament-wound case materials | |
Gotsis et al. | Progressive fracture of fiber composite thin shell structures under internal pressure and axial loads | |
Almroth | Design of composite material structures for buckling-an evaluation of the state-of-the-art | |
Virk et al. | Design, manufacture, mechanical testing and numerical modelling of an asymmetric composite crossbow limb | |
Rathnam | Characterization of light-weight impact-resistant fiber-reinforced elastomer composite materials | |
Rao | Analysis of tapered laminated composite tubes under tension and torsion | |
Stewart et al. | Analysis of the in-plane properties of hybrid glass/carbon woven fabric composites | |
Ferreira et al. | An optimization procedure for maximizing the energy absorption capability of composite shells | |
Minnetyan et al. | Probabilistic assessment of fracture in stitched and unstitched composite laminates |