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Abstrakty
The object of the study was a thin-walled sample made of carbon composite. The studied profile was a z-shaped cross section. The aim of the study was a post critical state analysis by the use of four independent destruction initiation criteria. The numerical analysis was conducted in ABAQUS®. The study presents the critical areas of the composite sample and determines the load values at which initiation criteria were met. The post critical state examination was confronted with previously obtained results of the critical state. In addition, the effect of the laminate layer configuration on the stability and load capacity of the structure is shown.
Wydawca
Rocznik
Tom
Strony
52--58
Opis fizyczny
Bibliogr. 25 poz., fig., tab.
Twórcy
autor
- Faculty of Mechanical Engineering, Lublin University of Technology, Nadbystrzycka 36, 20-618 Lublin, Poland
Bibliografia
- 1. Abaqus HTML Documentation.
- 2. Czapski P., Kubiak T.: Numerical and experimental investigations of the postbuckling behaviour of square cross-section composite tubes. Composite Structures (2015), 132, pp. 1160-1167.
- 3. Davis J.G.: Compressive Strength of Fiber Reinforced Composite Materials. NASA TM X-71992, 1974.
- 4. Debski H., Teter A., Kubiak T., Samborski S.: Local buckling, post-buckling and collapse of thin-walled channel section composite columns subjected to quasi-static compression. Composite Structures (2016); 136:593-601.
- 5. Dębski H.: Badania numeryczne i doświadczalne stateczności i nośności kompozytowych słupów cienkościennych poddanych ściskaniu. Zeszyty naukowe nr 1161, Wydawnictwo Politechniki Łódzkiej, Łódź, 2013.
- 6. Dębski H.: Experimental investigation post-buckling behaviour of composite column with top-hat cross section. Eksploatacja i Niezawodnosc – Maintenance and Reliability (2013); 2:106-110.
- 7. Falkowicz K., Ferdynus M., Dębski H.: Numerical analysis of compressed plates with a cut-out operating in the geometrically nonlinear range. Eksploatacja i Niezawodnosc – Maintenance and Reliability (2015); 17(2):222-227.
- 8. Falkowicz K., Mazurek P., Rozylo P., Wysmulski P., Smagowski P.: Experimental and numerical analysis of the compression of a thin-walled composite plate. Advances in Science and Technology - Research Journal (2016); 10(31):177-184.
- 9. German J.: Podstawy mechaniki kompozytów włóknistych. Politechnika Krakowska, Kraków, 2001.
- 10. Gliszczynski A., Czechowski L. Collapse of channel section composite profile subjected to bending. Part I: Numerical investigations, Composite Structures 178, 2017, 383-394.
- 11. Gliszczynski A., Kubiak T. Load-carrying capacity of thin-walled composite beams subjected to pure bending, Thin-Walled Structures 115, 2017, 76-85.
- 12. Gliszczynski A., Kubiak T. Progressive failure analysis of thin-walled composite columns subjected to uniaxial compression, Composite Structures 169, 2017, 52-61.
- 13. Jenkins C.F.: Materials of construction used in aircraft and aircraft engines. Report to the Great Britain Aeronautical Research Committee, 1920.
- 14. Klepka T., Dębski H., Rydarowski H. Characteristics of high-density polyethylene and its properties simulation with use of finite element method. Polimery (2009), Vol. 54 Issue 9, 668-672.
- 15. Kopecki, T., Mazurek, P.: Problems of numerical bifurcation reproducing in postcritical deformation states of aircraft structures. J. Theor. Appl. Mech. 51(4), 969–977 (2013)
- 16. Kubiak T, Kolakowski Z, Swiniarski J, Urbaniak M, Gliszczynski A.: Local buckling and post-buckling of composite channel-section beams - Numerical and experimental investigations, Composites Part B 2016; 91; 176-188.
- 17. Molnar V, Fedorko G, Husakova N, Kral J, Ferdynus M.: Energy calculation model of an outgoing conveyor with application of a transfer chute with the damping plate. Mechanical Sciences, vol. 7, is-sue 2, 2016, pp.167-177.
- 18. Pignataro M, Luongo A, Rizzi N.: On the effect of the local overall interaction on the postbuckling of uniformaly compressed channels. Thin-Walled Structures 3:283-321;1985.
- 19. Reddy JN, Pandey AK.: A first-ply failure analysis of composite laminates. Computation Structures, vol. 25, no 3, 1987, pp.371–393.
- 20. Rozylo P.: Numerical thermal analysis of a car braking system. Advances in Science and Technology - Research Journal (2017); vol. 11, issue 2, pp.38-43.
- 21. Rozylo P., Lukasik D.: Numerical analysis of the critical state of thin-walled structure with z-profile cross section. Advances in Science and Technology - Research Journal (2017); vol. 11, issue 1, pp.194-200.
- 22. Rozylo P.: Optimization of I-section profile design by the finite element method. Advances in Science and Technology - Research Journal 2016, 10 (29), pp.52-56.
- 23. Rozylo P.: Experimental-numerical test of open section composite columns stability subjected to axial compression. Archives of Material Science and Engineering 2017, 84(2), pp.58-64.
- 24. Rozylo P., Wrzesinska K.: Numerical analysis of the behaviour of compressed thin-walled elements with holes. Advances in Science and Technology - Research Journal (2016); 10(31):199-206.
- 25. Singer J, Arbocz J, Weller T.: Buckling Experiments. Experimental methods in buckling of thin-walled structure. Shells built-up structures, composites and additional topics. Volume 2. John Wiley & Sons Inc. New York 2002.
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-1148e8dc-6722-43ad-9ceb-9c1aef722561
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