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This is because the nature of damage in composite laminates is generally diffused, characterized by multiple matrix cracks, fibre pullout, fibre breakage and delaminations.
The effects of the crack density, CNT volume fraction, temperature variation, foundation stiffness, as well as the beam end conditions on the vibration characteristics of hybrid laminated beams with multiple matrix cracks are discussed in detail.
DDM is performed by means of Regularized eXtended-Finite Element Method (Rx-FEM) where multiple matrix cracks in different plies are modeled simultaneously with interplay delaminations in interactive fashion.
It is shown that the models with the capability to simulate multiple matrix cracks best predict the key aspects of barely visible damage of composite laminate during quasi-static loading.
The effects of the crack density, CNT volume fraction, temperature variation and the foundation stiffness on the nonlinear low-velocity impact response of hybrid laminated plates with multiple matrix cracks are discussed in detail.
From the results obtained in this study, it is concluded that the multiple matrix cracks in the glass textile-reinforced mortar allow a more extensive stress redistribution that makes this material a promising solution for the out-of-plane strengthening of masonry walls.
Similar(53)
A model based upon probabilistic-statistical approaches to multiple matrix cracking and fiber failures is proposed.
These observations on the interfacial debonding accompanying the multiple matrix cracking, and their comparison with the theoretical analyses of the matrix cracking and debonding behaviors are presented.
The phenomena of multiple matrix cracking and fiber matrix interfacial debonding are directly observed and analyzed in a transparent SiC fiber-reinforced borosilicate glass composite.
A new model is proposed for multiple matrix cracking in order to take into account the role of matrix-rich regions in the cross section in initiating crack growth.
Surface replicas taken intermittently during loading revealed that transverse softening of the elastic stiffness was associated with fiber/matrix interface damage mainly in the 0° plies, while the large softening of the elastic stiffness in the loading direction was the result of multiple matrix cracking in both the 0° and 90° plies.
Related(14)
many matrix cracks
multiple matrix constituents
multiple matrix variables
multiple interacting cracks
multiple matrix diffusivities
multiple matrix components
multiple fatigue cracks
multiple matrix metalloproteases
multiple matrix representations
multiple matrix products
multiple matrix inversions
multiple matrix proteins
multiple transverse cracks
multiple matrix metalloproteinases
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