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Titlebook: Mechanics of Composite Materials and Structures; Carlos A. Mota Soares,Cristóvão M. Mota Soares,Man Book 1999 Springer Science+Business Me

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Micromechanics Analysis of Composite Materials,es, the common approach is to pass the physical material to an abstractive one; based on which analytical models are then formulated, capable of describing the mechanics of the material under external load. In this context, a “forward approach” and a “backward approach” exist. The former simplifies
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Prediction of the Effective Damage Properties and Failure Properties of Non Linear Anisotropic Discles and an SMC R (polyester matrix with randomly oriented glass fibres). The main damage mechanism is particle failure (for the MMC) or fibre-matrix interface debonding (for the SMC)..Moreover, for the AlSiC. composite, regions of the matrix adjacent to broken particles are sites with high hydrostat
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Mechanics of Three-Dimensional Textile Structural Composites: Processing,g techniques. It is within this realm of preforming technology that the full advantage of the knowledge of processstructure-property relations may be realesed. The fabrication history of these preforms directly determines composite micro-structure and resulting mechanical properties. Textile preform
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Testing and Modeling of Inelastic Behavior of Fibrous Composites,e parameter was proposed for the flow rule. The parameters of the plasticity model were determined by simple tension tests on off-axis composite specimens. It was shown that this plasticity model was able to characterize the nonlinear behavior of polymeric and metal-matrix composites.
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Characterization of Strain Rate-Dependent Behavior in Polymeric Composites,astic potential function in characterizing the nonlinear stress-strain relations and on the use of off-axis composite specimens to generate data that capture the anisotropic properties. Experimental results of an S2 glass composite are used to verify the constitutive models.
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A Treatment of Interfacial Cracks in the Presence of Friction,based on finite extension strain energy release rate, is proposed to capture the intrinsic fracture toughness. The finite extension strain energy release rate is shown to represent the magnitude of the singular stress field. Numerical simulations of a center crack in a bimaterial infinite media unde
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