eprintid: 3488 rev_number: 11 eprint_status: archive userid: 354 dir: disk0/00/00/34/88 datestamp: 2019-07-05 01:51:19 lastmod: 2019-07-05 01:51:19 status_changed: 2019-07-05 01:51:19 type: article metadata_visibility: show creators_name: Kim, Seung-Eock creators_name: Nguyen, Dinh Duc creators_name: Vu, Hoai Nam creators_name: Nguyen, Van Sy creators_id: ducnd@vnu.edu.vn title: Nonlinear vibration and dynamic buckling of eccentrically oblique stiffened FGM plates resting on elastic foundations in thermal environment ispublished: pub subjects: Mechanics subjects: civil_engineering subjects: isi divisions: CET_uet abstract: This paper presents a semi-analytical approach to investigate the nonlinear dynamic response and vibration of eccentrically oblique stiffened functionally graded plate resting on elastic foundation. The Lekhnitskii's smeared stiffener technique is improved by using a transformation technique for oblique stiffeners. Governing equations are solved by classical shell theory, Galerkin method, stress function with temperature-dependent material effects. The results show the influences of geometrical parameters, material properties, imperfection, the elastic foundations, eccentrically oblique stiffeners, mechanical loads and temperature on the nonlinear dynamic response and nonlinear vibration of plates. The numerical results in this paper are compared with the results reported in other reports. date: 2019 date_type: published publisher: Elsevier official_url: https://www.sciencedirect.com/science/article/pii/S0263823118308954 full_text_status: public publication: Thin-Walled Structures volume: 142 pagerange: 287-296 refereed: TRUE issn: 0263-8231 citation: Kim, Seung-Eock and Nguyen, Dinh Duc and Vu, Hoai Nam and Nguyen, Van Sy (2019) Nonlinear vibration and dynamic buckling of eccentrically oblique stiffened FGM plates resting on elastic foundations in thermal environment. Thin-Walled Structures, 142 . pp. 287-296. ISSN 0263-8231 document_url: https://eprints.uet.vnu.edu.vn/eprints/id/eprint/3488/1/10.1016%40j.tws.2019.05.013.pdf