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This study investigates the impact response and damage mechanisms of composite sandwich structures in arctic condition.
A residual strain model was presented based on the fatigue-accumulated damage mechanisms of composite materials.
The load-transfer mechanisms of composite floor when connections fail due to axial tension, vertical shear and bending are investigated.
Using the proposed modeling approach, more detailed studies can be done on the toughening mechanisms of composite multilayered materials.
Various failure mechanisms of composite cylindrical shells, as affected by initial geometric imperfections, boundary conditions, lamina stacking sequence, anisotropic coupling effects, different cutouts and load eccentricity, were identified by Weaver (2000), in terms of laminate configurations and shell proportions.
The genetic mechanisms of composite tight gas reservoirs are thus a recombination of conventional tight and deep tight gas reservoir accumulations, resulting in the complex gas water relationships and full gas-bearing properties.
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Several toughening mechanisms of composites are described at the end of this chapter.
Much work has recently been devoted to the failure mechanisms of composites.
We examine the fracture mechanisms of composites at different scales based on a mechanical statistical and an energy-geometry analysis.
With development of studies on damage mechanisms of composites, although multiple failure criteria for composites were suggested, even a most accepted failure criterion might not be suitable for all the conditions.
Other approaches exist to describe damage mechanisms of composites but they cannot always be applied at the structure scale because of their complexity.
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