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Stability Problems of Compressed Thin-Walled Structures

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EN
Abstrakty
EN
The object of this study involves thin-walled columns made of carbon-epoxy composite with open top-hat cross-section. The material used comprised a composite of epoxy matrix reinforced with carbon fiber (system HexPly M12, Hexcel). The M12 system is used above all in aircraft structures. It exhibits high fatigue durability and good maintenance properties at relatively low specific gravity. The research was carried out as the FEM numerical analyses and experimental tests in buckling and post-buckling state. The numerical tool used was the ABAQUS software.
Twórcy
  • Department of Machine Design and Mechatronics, Lublin University of Technology, Lublin, Poland
Bibliografia
  • 1. Campbell F.C., Manufacturing Technology for Aerospace Structural Materials. Elsevier, 2006.
  • 2. Miracle, D.P., Donaldson, S.L. (eds), ASM Handbook Vol. 21 Composites. ASM International, 2001.
  • 3. Freeman, W.T., The Use of Composites in Aircraft Primary Structure. Composites Engineering, Vol. 3, Nos 7–8, pp. 767–775, 1993.
  • 4. Swanson S.R., Introduction to Design and Analysis with Advanced Composite Materials. Prentice- Hall, Inc.,1997.
  • 5. H.Dębski, J.Jonak: Failure analysis of thin-walled composite channel section columns, Composite Structures 132 (2015) 567–574.
  • 6. Wysmulski P., Debski H., Rozylo P., Falkowicz K. A study of stability and post-critical behaviour of thin-walled composite profiles under compression,Eksploatacja i Niezawodnosc- Maintenance and Reliability, 18(4): pp. 632–637, 2016.
  • 7. Kopecki T., Mazurek P., Lis T., Chodorowska D., Post-buckling deformation states of semi-monocoque cylindrical structures with large cut-outs under operating load conditions. numerical analysis and experimental tests, Eksploatacja i Niezawodnosc-Maintenance and Reliability 18(1): pp. 16–24, 2016.
  • 8. Rozylo P., Teter A., Debski H., Wysmulski P., Falkowicz K. Experimental and Numerical Study of the Buckling of Composite Profiles with Open Cross Section under Axial Compression, Applied Composite Materials 24: pp. 1251–1264, 2017.
  • 9. Kopecki T., Mazurek P., Determination of stress distribution patterns in post-critical deformation states of thin-walled skins subjected to operating loads, Eksploatacja i Niezawodnosc-Maintenance and Reliability 16(1), pp. 608–615, 2014.
  • 10. Koiter W.T., Elastic stability and post-buckling behavior. In:Proceedings of the Symposium on Non-linear Problems, Univ. of Wisconsin Press, Wisconsin, pp. 257–275, 1963.
  • 11. Singer J, Arbocz J, Weller T., Buckling experiments. Experimental methods in buckling of thin-walled structure. New York: John Wiley & Sons Inc.; Basic concepts, columns, beams, and plates, vol. 1; 1998. Shells built-up structures, composites and additional topics, vol. 2, 2002.
  • 12. Coan JM., Large-deflection theory for plates with small initial curvature loaded in edge compression. SME, J Appl Mech,18, pp. 143–51, 1951.
  • 13. Venkataramaiah KR, Roorda J., Analysis of local plate buckling experimental data. In: Sixth international specialty conference on cold-formed steel structures; 1982 November 16–17; St. Louis, Missouri, Missouri S&T [formerly the University of Missouri – Rolla, pp. 45–74], 1982.
  • 14. Tereszkowski Z., An experimental method for determining critical loads of plates. Arch Mech Eng, 3, pp. 485–93, 1970.
  • 15. van der Heijden AMA, editor, W.T. Koiter’s elastic stability of solids and structures. Cambridge University Press, 2009.
  • 16. Bronshtein J.N, Semendyayev K.A., Guide Book to Mathematics. Zürich, Part6: Interpretation of Experimental Results. 1973.
  • 17. Spencer H.H., Walker A.C., Technique for Measuring The Critical Loads of Columns and Plates.Paper No.2290A SESA Spring Meet-ing,1974.
  • 18. Kolakowski Z., Kowal-Michalska K. (eds.), Selected problems of instabilities in composite structures. A Series of Monographs, Technical University of Lodz, 1999.
  • 19. Tsai SW, Wu EM., A general theory of strength for anisotropic materials. J. Compos. Mater. pp. 58–80,1971.
  • 20. Thompson J.M.T., Hunt G.W., General theory of elastic stability. Wiley, New York, 1973.
  • 21. Dębski H., Kubiak T., Teter A., Buckling and postbuckling behavior of thin-walled composite channel section beam. Composite Structures, 100,195–204, 2013.
  • 22. Dębski H., Experimental investigation post-buckling behaviour of composite column with top-hat cross section. Eksploatacja i Niezawodność – Maintenance and Reliability, Warszawa No2/2013, 105–109, 2013.
  • 23. Bieniaś J., Dębski H., Surowska B., Sadowski T., Analysis of microstructure damage in carbon/epoxy composites using FEM. Computational Materials Science, 64, 168–172, 2012.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-b8da9faa-d170-4f07-940d-fb74bbe38151
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