Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
The study presented the results of model experimental investigations on box structures made using additive manufacturing. The examined models had walls with reinforcements in the form of corrugations. An experiment was also conducted using a reference model without stiffeners. The aim of the study was to determine the influence of corrugation geometry on the shape and magnitude of structure deformations, as well as on the level of critical loads. The experiments were conducted using a dedicated research stand. Nonlinear numerical analyses of selected structure variations were also carried out using finite element method-based software.
Wydawca
Rocznik
Tom
Strony
287--297
Opis fizyczny
Bibliogr. 17 poz., fig., tab.
Twórcy
autor
- Department or Mechanical Engineering and Aviation, Rzeszów University of Technology, Al. Powstańców Warszawy 8, Rzeszów, Poland
autor
- Department or Mechanical Engineering and Aviation, Rzeszów University of Technology, Al. Powstańców Warszawy 8, Rzeszów, Poland
Bibliografia
- 1. Dayyani I., Shaw A.D., Saavedra Flores E.I., Friswell M.I., The mechanics of composite corrugated structures: A review with applications in morphing aircraft, Composite Structures1 December 2015.
- 2. Bo-Li Z., Wen-Hua B., Chen-Bao W., Jia-Qi Z., Hao-Jun S., Xiong W, Yan-Lin G., Experimental and numerical investigation into hysteretic performance of orthogonal double corrugated steel plate shear wall, Thin–Walled Structures 2024, 195: 111392.
- 3. Chen-Bao W., Bo-Li Z., Hao-Jun S., Yan-Lin G., Wen-Jin Z., Li-Lan D., Global stability design of double corrugated steel plate shear walls under com- bined shear and compression loads, Thin–Walled Structures 2024; 199: 111789.
- 4. Shaw A.D., Dayyani I., Friswell M.I., Optimisation of composite corrugated skins for buckling in morphing aircraft, Composite Structures, 2015; 133: 358–380.
- 5. Kratochvíl J., Sadilek M., Musil V., Stanceková D., The effectiveness of strategies printing printer easy 3D maker, Advances in Science and Technology Research Journal 2018; 12(2): 197–205.
- 6. Dobrzanski P., Czarnocki P., Lorenz Z., Shell structures – theory and application, CRC Press, 2013.
- 7. Kopecki H., Kopecki T., Swiech Ł., Issues of aircraft structural strength, Rzeszow University of Technology Publishing House, Rzeszow, 2023.
- 8. Monaldo E., Ricci M., Marfia S. Mechanical properties of 3D printed polylactic acid elements: Experimental and numerical insights, Mechanics of Materials, 2023; 177: 104551.
- 9. Kopecki T., Święch Ł., Experimental-numerical analysis of a flat plate subjected to shearing and manufactured by incremental techniques, Advances in Science and Technology Research Journal 2023; 17(4): 179–188.
- 10. Felippa C.A., Crivelli L.A., Haugen B. A Survey of the Core-congruential Formulation for Nonlinear Finite Element, Archives of Computer Methods in Engineering 1994; 1: 1–48.
- 11. Madier D., Practical Finite Element Analysis for Mechanical Engineers, 2020, FEA Academy.
- 12. Doyle J.F. Nonlinear analysis of thin-walled structures, Springer-Verlag, Luxemburg 2001.
- 13. Mazurek P., Fatigue strength of thin-walled rectangular elements in the state of post-critical deforma- tion, Advances in Science and Technology Research Journal 2019; 13(2): 84–91.
- 14. Swiech, Ł. Experimental and numerical studies of low-profile, triangular grid-stiffened plates subjected to shear load in the post-critical states of deformation, Materials, 2019; 12: 3699.
- 15. Tewari K., Pandit M.K., Budarapu P.R., Natarajan S., Analysis of sandwich structures with corrugated and spiderweb-inspired cores for aerospace applications, Thin-Walled Structures, 2022; 180: 109812.
- 16. Kopecki T., Swiech Ł., Experimental-numerical analysis of a flat plate subjected to shearing and manufactured by incremental techniques, Advances in Science and Technology Research Journal 2023; 17(4): 179–188.
- 17. Monaldo E., Ricci M., Marfia S. Mechanical properties of 3D printed polylactic acid elements: Experimental and numerical insights, Mechanics of Materials 2023; 177: 104551.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-a1a9eaef-3183-4172-9dd3-540015b3f49b