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The 2D delamination behavior of composite laminates under quasi-static out-of-plane opening loading has been experimentally investigated.
One cannot properly describe or model the behavior of composite laminates, therefore, without an understanding and representation of nonlinear behavior.
Then numerical models were built to simulate the delamination behavior of composite laminates.
However, the mechanical behavior of composite laminates is very complex due the inherent anisotropy and heterogeneity.
The effect of delamination resistance on fatigue crack growth behavior of composite laminates is studied.
Progressive damage simulation is of major importance for predicting the damage behavior of composite laminates.
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From the displacement field, a finite element equation on the structural behavior of composite laminate is newly induced and a computational program is coded.
In this study, low velocity impact (LVI) behaviors of composite laminates reinforced with fabrics of different architecture are investigated.
The flexural damping behaviors of composite laminates were characterized analytically in this study.
The present viscoelastic finite element of composite laminates provides a powerful tool to accurately investigate the responses of the viscoelastic and time-dependent mechanical behaviors of composite laminates.
An efficient higher-order plate theory for viscoelastic materials is developed to predict the time-dependent mechanical behaviors of composite laminates.
More suggestions(20)
performance of composite laminates
behavior of composite sheets
behavior of composite blades
behavior of impacted laminates
behavior of cracked laminates
behavior of polymeric laminates
behavior of different laminates
behavior of curved laminates
behavior of unidirectional laminates
behavior of corrugated laminates
behavior of interleaved laminates
behavior of nanomodified laminates
behavior of composite columns
behavior of composite tubes
behavior of composite slabs
behavior of composite joints
behavior of composite beams
behavior of composite scaffolds
behavior of composite parts
behavior of composite gels
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