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Analytical modeling of synthetic fiber ropes subjected to axial loads. Part I: A new continuum model for multilayered fibrous structures
Institution:1. Institut de recherche en Génie civil et Mécanique (GéM), Ecole Centrale de Nantes, 1, Rue de la Noe, BP92101, 44321 Nantes Cedes 03, France;2. IFREMER, Materials and Structures group BP70, 29280 Plouzané, France;3. Université de Nantes, Nantes Atlantique Universités, Institut de recherche en Génie civil et Mécanique (GéM), Ecole Centrale de Nantes, BP92101, 44321 Nantes, France
Abstract:Synthetic fiber ropes are characterized by a very complex architecture and a hierarchical structure. Considering the fiber rope architecture, to pass from fiber to rope structure behavior, two scale transition models are necessary, used in sequence: one is devoted to an assembly of a large number of twisted components (multilayered), whereas the second is suitable for a structure with a central straight core and six helical wires (1 + 6). The part I of this paper first describes the development of a model for the static behavior of a fibrous structure with a large number of twisted components. Tests were then performed on two different structures subjected to axial loads. Using the model presented here the axial stiffness of the structures has been predicted and good agreement with measured values is obtained. A companion paper (Ghoreishi, S.R. et al., in press. Analytical modeling of synthetic fiber ropes, part II: A linear elastic model for 1 + 6 fibrous structures, International Journal of Solids and Structures, doi:10.1016/j.ijsolstr.2006.08.032) presents the second model to predict the mechanical behavior of a 1 + 6 fibrous structure.
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