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A random walk coefficient (RWC) prediction model is developed using a radiation-induced attenuation model of fiber and a RWC expression.
A physical meaning to the phenomenological law is proposed via a simple model of fiber rupture in single-fiber-reinforced composite.
To circumvent these difficulties, we present a two dimensional kinematic multi tendon-string EA model of fiber slackness and tautness through IP motion, including the retinacular and oblique retinacular EA ligaments.
Recently, a new model of fiber architecture of the linea alba has been described consisting of an oblique fiber layer of intermingling oblique fibers, a transverse fiber layer containing mainly transverse fibril bundles, and a variable, small irregular fiber layer.
Moreover, considering the neighboring CNTs' tunneling effect, we modeled CNTs as 'hard-core' objects instead of the so-called 'soft-core' model of fiber [15] to deal with both tensile and compressive strains on nanocomposites, with the assumption of non-penetration between the CNTs.
Monotonic stress strain relationship of actively-confined concrete has been used as the base model to establish analysis-oriented stress strain model of fiber reinforced polymer (FRP) confined concrete.
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In this study, a stress-strain model of fiber-reinforced polymers (FRPs -confined concrete based on the lateral conFRPs -confinedness was adopted to simulate the lateral response of Rconcretes retrofitted with external FRP jackets and tested under axial and lateral loads.
The paper addresses the problem of modeling of fiber reinforced composites with imperfect bonding between the matrix and the inhomogeneities.
Modeling of fiber flocculation inside the headbox requires taking into account the two-phase nature of the flow and the interactions between the carrying phase, water, and the dispersed phase, flocs.
The results may guide the definition of models and the selection of the size of representative volume elements in sequential multiscale models of fiber networks.
The goal of this paper is to give a deep understanding of some topics which are still unclear in the micro modeling of fiber kinking.
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