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Evaluation of the Damage Initiation of a Composite Thin-Walled Structure, on the Example of the ADUSTER Gyroplane Undercarriage

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Języki publikacji
EN
Abstrakty
EN
The subject of the research was a undercarriage leg of a gyroplane made of composite materials. The aim of the work was to assess the level of damage initiation of the composite gyroplane undercarriage. In the study, a structural capacity analysis was carried out, taking into account the phenomenon of damage initiation. Numerical calculations were conducted based on the finite element method in the ABAQUS® software. The issue was solved according to the Newton-Raphson algorithm.
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Twórcy
  • Faculty of Mechanical Engineering, Lublin University of Technology, Nadbystrzycka 36, 20-618 Lublin, Poland
  • Faculty of Mechanical Engineering, Lublin University of Technology, Nadbystrzycka 36, 20-618 Lublin, Poland
Bibliografia
  • 1. Debski H. Experimental investigation of post-buckling behavior of composite column with top-hat cross-section. Eksploatacja i Niezawodnosc – Maintenance and Reliability 2013; 15(2): 106–110.
  • 2. Debski H, Koszalka G, Ferdynus M.: Application of fem in the analysis of the structure of a trailer supporting frame with variable operation parameters. Eksploatacja i Niezawodnosc – Maintenance and Reliability 2012; 14(2): 107–114.
  • 3. German J.: Podstawy mechaniki kompozytów włóknistych. PK, Kraków, 2001.
  • 4. Jenkins C.F.: Materials of construction used in aircraft and aircraft engines. Report to the Great Britain Aeronautical Research Committee, 1920.
  • 5. Nieoczym A., Szklarek K.: Finite Elements Strength Analysis of a Compressor Consisting of Four Helical Rotors. Adv. Sci. Technol. Res. J. 2018; 12(1): 1–8.
  • 6. Mendes P.A.A.E., Donadon M.V.: Numerical prediction of compression after impact behavior of woven composite laminates. Composite Structures 2014; 113: 476–491.
  • 7. Rozylo P.: Optimization of I-section profile design by the finite element method. Adv. Sci. Technol. Res. J. 2016; 10(29): 52–56.
  • 8. Reddy JN, Pandey AK.: A first-ply failure analysis of composite laminates. Computation Structures 1987; 25(3): 371–393.
  • 9. Rozylo P.: Experimental-numerical test of open section composite columns stability subjected to axial compression. Archives of Material Science and Engineering 2017; 84(2): 58–64.
  • 10. Rozylo P.: Numerical analysis of the postbuckling of thin-walled composite structure with z-profile cross section. Adv. Sci. Technol. Res. J. 2018; 12(2): 52–58.
  • 11. Rozylo P, Debski H, Kral J. Buckling and limit states of composite profiles with top-hat channel section subjected to axial compression. AIP Conf Proc 2018;1922:080001.
  • 12. Rozylo P., Lukasik D.: Numerical analysis of the critical state of thin-walled structure with z-profile cross section. Adv. Sci. Technol. Res. J. 2017; 11(1): 194–200.
  • 13. Tsai SW.: Strength Theories of Filamentary Structures in Fundamental Aspects on Fibre Reinforced Plastic Composites. Conference Proceedings, R. T. Schwartz and H. S. Schwartz (Editors), Dayton, Ohio, 24 – 26 May 1966, Wiley, New York, 1968.
  • 14. Tsai SW., Wu EM.: A general theory of strength for anisotropic materials. Journal of Composite Materials 1971; 5(1): 58–80.
  • 15. Zienkiewicz O.C., Taylor R.L.: Finite Element Method (5th Edition) Volume 2 – Solid Mechanics. Elsevier, 2000.
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-4a1e85db-8f18-4328-b6cf-40b217566091
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