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This paper is devoted to the mechanics, modelling and analysis of fabric-reinforced composites and structural components. A theoretical and experimental characterisation of elastic properties of the textile composites is considered. Typical stress-strain diagrams for fibreglass fabric composites and composites reinforced with knitted fabrics loaded in tension at different angles are presented. The special case of the three-dimensional reinforcement structure of composite material, composed of spatially-oriented fabric layers is discussed and corresponding models considered. Manufacturing technology for such structures includes a three-dimensional lay-up process in which the specially designed fabric patterns are placed onto the mould or mandrel. The implementation of the material model is illustrated with results of the stress-strain analysis of thin-walled spatially reinforced structural components.
Czasopismo
Rocznik
Tom
Strony
60--71
Opis fizyczny
Bibliogr. 15 poz.
Twórcy
autor
- School of Mechanical Engineering, University of Natal Durban 4041, South Africa
Bibliografia
- 1. V.V. Vasiliev and E.V. Morozov. Mechanics and Analysis of Composite Materials. (2001), Elsevier Science.
- 2. A.E. Bogdanovich and C.M. Pastore. Mechanics of Textile and Laminated Composites. (1996), Chapman & Hall.
- 3. T.W. Chou and F.K. Ko (Eds). Textile Structural Composites. (1989), Elsevier Science.
- 4. N.K. Niranjan. Woven Fabric Composites. (1994), Lancaster, Pa., Technomic.
- 5. M. Aono. Computer-Aided Geometric Design for Forming Woven Cloth Composites. PhD Thesis. (1994), Design and Manufacturing Institute, Rensselaer Polytechnic Institute, Troy, New York.
- 6. B.P. Van West and S.C. Luby. Fabric draping simulation in composites manufacturing. Part I and II. J. Adv. Materials (April 1997), pp. 29-41.
- 7. L.Dong, C. Lekakou and M.G. Bader. Solid mechanics draping simulations of woven fabrics. Proc. of the 12th International Conference on Composite Materials (ICCM-12), Paris, France, (July 1999), (CD-ROM).
- 8. J.L.Billoet, and A. Cherouat. Meso-structural behaviour of composite fabric for the simulation of manufacturing of thin composite by shaping process. Proc. of the 12th International Conference on Composite Materials (ICCM-12), Paris, France, (July 1999), (CD-ROM).
- 9. C. Herzberg, S. Krzywinski and H. Rodel. Load-adapted 3D-reinfircement through functionadjusted stitching technique. Proc. of the 13th International Conference on Composite Materials (ICCM-13), Beijing, China, (June 2001), (CD-ROM).
- 10. Yu.M. Tarnopol’skii, I.G. Zhigun and V.A. Polyakov. Spatially Reinforced Composites. (1992), Technomic, PA.
- 11. N.J. Pagano and L.E. Whitford. On the solution for the elastic response of involute bodies. Composite Sci. Technol. 22(4), (1985), pp. 295-317.
- 12. A.M. Skudra, F.Ya. Bulavs, M.R. Gurvich and A.A. Kruklinsh. Elements of Structural Mechanics of Composite Truss Systems. (1989), Riga, Zinatne (in Russian).
- 13. V.V.Vasiliev and E.V. Morozov. Applied theory of spatially reinforced composite shells. J. of Mechanics of Composite Materials, Vol.24, No.3, (1988). N.Y.: Plenum Publishing Corp., pp. 393-400.
- 14. V.V. Vorobey, E.V. Morozov, and O.V. Tatarnikov, Analysis of Thermostressed Composite Structures. (1992), Moscow, Mashinostroenie (in Russian).
- 15. E.V. Morozov. Analysis of spatially reinforced composite shells of revolution. Proc. of the 13th International Conference on Composite Materials (ICCM-13), Beijing, China, (June 2001), (CD-ROM).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0a3b4ece-daa9-4d97-b171-9d87b3abda68