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Effect of fluctuation shape functions on vibrations of laminated structures

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EN
Abstrakty
EN
In this note, the influence of the fluctuation shape functions on vibrations of the periodic laminate is analysed. The structure, used to show this impact, is the composite, consisting of the layers made of components differ in material properties like a specific heat or a thermal conductivity. The periodic laminate is microscopically heterogenous and to analyse this laminate, the tolerance averaging technique is used, therefore the influence of the thickness of the layer can be allow. One of the concepts introduced by tolerance modelling, is the fluctuation shape function, affecting on the results. The fluctuation shape function is assumed a priori and the character of vibrations is dependent on this function.
Rocznik
Strony
art. no. 2020213
Opis fizyczny
Bibliogr. 18 poz., rys., wykr.
Twórcy
  • Department of Structural Mechanics, Łódź University of Technology, al. Politechniki 6,90-924 Łódź, Poland
Bibliografia
  • 1. J. Marczak, J. Jędrysiak, Vibrations of periodic sandwich plates with inert core, Vibrations in Physical Systems, 27 (2016) 265 - 272.
  • 2. J. Marczak, Vibrations of sandwich plates - comparison of chosen modelling approaches, Vibrations in Physical Systems, 29 (2018) 2018036(9).
  • 3. Ł. Domagalski, J. Jędrysiak, Nonlinear vibrations of periodic beams, Vibrations in Physical Systems, 26 (2014) 73 - 78.
  • 4. M. Świątek, J. Jędrysiak, Ł. Domagalski, Influence of substructure properties on natural vibrations of periodic Euler-Bernoulli beams, Vibrations in Physical Systems, 27 (2016) 377 - 384.
  • 5. M. Świątek, J. Jędrysiak, Ł. Domagalski, Linear vibrations of periodic Timoshenko and Rayleigh beams, Vibrations in Physical Systems, 29 (2018) 2018035(7).
  • 6. Ł. Domagalski, M. Świątek, J. Jędrysiak, An analytical-numerical approach to vibration analysis of periodic Timoshenko beams, Composite Structures, 211 (2019) 490 - 501.
  • 7. M. Świątek, Ł. Domagalski, J. Jędrysiak, Free vibrations spectrum of periodically inhomogeneous Rayleigh beams using the tolerance averaging technique, Journal of Theoretical and Applied Mechanics, 57(1) (2019) 141 - 154.
  • 8. J. Jędrysiak, E. Pazera, Free vibrations of thin microstructured plates, Vibrations in Physical Systems, 26 (2014) 93 - 98.
  • 9. J. Jędrysiak, E. Pazera, Vibrations of non-periodic thermoelastic laminates, Vibrations in Physical Systems, 27 (2016) 175 - 180.
  • 10. E. Pazera, J. Jędrysiak, Effect of temperature on vibrations of laminated layer, Vibrations in Physical Systems, 29 (2018) 2018037(8).
  • 11. J. Jędrysiak, Free vibrations of medium thickness microstructured plates, Vibrations in Physical Systems, 27 (2016) 169 - 174.
  • 12. B. Tomczyk, P. Szczerba, A new asymptotic-tolerance model of dynamic and stability problems for longitudinally graded cylindrical shells, Composite Structures, 202 (2018) 473 - 481.
  • 13. Z. F. Baczyński, Dynamic thermoelastic processes in microperiodic composites, Journal of Thermal Stresses, 26 (2003) 55 - 66.
  • 14. V. V. Jikov, C. M. Kozlov, O. A. Oleinik, Homogenization of differential operators and integral functionals, Springer Verlag, Berlin-Heidelberg 1994.
  • 15. S. J. Matysiak, Application of the method of microlocal parameters to problems of periodic thermoelastic composites, Materials Science, 35(4) (1999) 521 - 526.
  • 16. D. Pawlus, Sensitivity of composite structure with directional properties of annular three-layered plate mechanically and thermally loaded, Mechanics and Mechanical Engineering, 22(3) (2018) 691 - 702.
  • 17. D. Pawlus, Dynamic response of three-layer annular plate with damaged composite facings, Archive of Mechanical Engineering, 65(1) (2018) 83 - 105.
  • 18. E. Pazera, P. Ostrowski, J. Jędrysiak, On Thermoelasticity in FGL - Tolerance Averaging Technique, Mechanics and Mechanical Engineering, 22(3) (2018) 703 -717.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-477d21bb-7960-4837-a9a2-86e8815e0299
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