Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
This paper presents the dynamic behaviour of three-layered, annular plates with a linear viscoelastic core. The annular plate is loaded in plane of facings with variable in time forces acting on the inner or outer plate edges. The analysed plate structure is symmetric and composed of three-layers: thin facings and a thicker, soft core. The core material is considered as linear with viscoelastic properties. Analytical and numerical solution will be presented including the wavy forms of dynamic loss of plate stability. In the analytical and numerical solution, two approximation methods: orthogonalization and finite difference have been applied to obtain the system of differential equations for the analysed problem of dynamic deflections of the examined plate with the viscoelastic core. Additionally, the suitable plate model using the finite element method has been built. The numerical calculations carried out in ABAQUS system show the results which are compatible with those obtained for the analytical and numerical solution. Presented in figures time histories of plate deflections and velocity of deflections as well as buckling forms of the plate model show the dynamic response of the examined plate on time-dependent loads and core material properties.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
775--788
Opis fizyczny
Bibliogr. 18 poz., rys., tab.
Twórcy
autor
- University of Bielsko-Biala, Faculty of Mechanical Engineering and Computer Science, Bielsko-Biała, Poland
Bibliografia
- 1. Chen Y.R., Chen L.W., Wang C.C., 2006, Axisymmetric dynamic instability of rotating polar orthotropic sandwich annular plates with a constrained damping layer, Composite Structures, 73, 2, 290-302
- 2. Dumir P.C., Shingal L., 1985, Axisymmetric postbuckling of orthotropic thick annular plates, Acta Mechanica, 56, 229-242
- 3. Hibbitt, Karlsson & Sorensen, Inc., 2000, ABAQUS/Standard User’s Manual, version 6.1
- 4. Krizhevsky G., Stavsky Y., 1996, Refined theory for vibrations and buckling of laminated isotropic annular plates, International Journal of Mechanical Sciences, 38, 5, 539-555
- 5. Majewski S., Maćkowski R., 1975, Creep of foamed plastics used as the core of a sandwich plate (in Polish), Inżynieria i Budownictwo, 3, 127-131
- 6. Pawlus D., 2010, Dynamic stability of three-layered annular plates with a viscoelastic core (in Polish), Scientific Bulletin of the Technical University of Łódź, 1075
- 7. Pawlus D., 2011a, Critical loads calculations of annular three-layered plates with soft elastic or viscoelastic core, Archives of Civil and Mechanical Engineering, XI, 4, 993-1009
- 8. Pawlus D., 2011b, Dynamic stability of three-layered annular plates with wavy forms of buckling, Acta Mechanica, 216, 123-138
- 9. Pawlus D., 2011c, Solution to the problem of axisymmetric and asymmetric dynamic instability of three-layered annular plates, Thin-Walled Structures, 49, 660-668
- 10. Paydar N., 1990, Axisymmetric buckling of an annular sandwich plate of varying thickness, Composite Structures, 15, 149-159
- 11. Romanów F., 1995, Strength of Sandwich Constructions (in Polish), WSI in Zielona Góra, Poland
- 12. Skrzypek J., 1986, Plasticity and Creep (in Polish), Warszawa, PWN
- 13. Standard, PN-84/B-03230, Lightweight curtain walls and roofs of sandwich and rib panels. Static calculation and design (in Polish), Standardization Publishers “Alfa”, Warszawa, 1985
- 14. Tanov R., Tabiei A., 1998, Static and dynamic buckling of laminated composite shells, Proceedings of the 5-th International LS-DYNA Users Conference, South Field, MI.
- 15. Volmir C., 1967, Stability of Deformed Systems (in Russian), Moskwa, Science
- 16. Volmir C., 1972, Nonlinear Dynamics of Plates and Shells (in Russian), Moskwa, Science
- 17. Wang H.J., Chen L.W., 2002, Vibration and damping analysis of a three-layered composite annular plate with a viscoelastic mid-layer, Composite Structures, 58, 563-570
- 18. Wang H.J., Chen L.W., 2004, Axisymmetric dynamic stability of rotating sandwich circular plates, Journal of Vibration and Acoustics, 126, 407-415
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-ece589d1-8e78-43b5-acbc-28b5e6ab55c1