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dc.contributor.authorPham, Hong Cong-
dc.contributor.authorPham, Minh Phuc-
dc.contributor.authorHoang, Thi Thiem-
dc.contributor.authorDuong, Tuan Manh-
dc.contributor.authorNguyen, Dinh Duc-
dc.date.accessioned2020-04-07T09:03:29Z-
dc.date.available2020-04-07T09:03:29Z-
dc.date.issued2020-
dc.identifier.citationPham, H. C., et al. (2020). Static Bending Analysis of Auxetic Plate by FEM and a New Third-Order Shear Deformation Plate Theory. VNU Journal of Science: Natural Sciences and Technology, Vol. 36, No. 1 (2020) 90-99.vi
dc.identifier.issn2588-1140-
dc.identifier.urihttp://repository.vnu.edu.vn/handle/VNU_123/76895-
dc.description.abstractIn this paper, a finite element method (FEM) and a new third-order shear deformation plate theory are proposed to investigate a static bending model of auxetic plates with negative Poisson’s ratio. The three – layer sandwich plate is consisted of auxetic honeycombs core layer with negative Poisson’s ratio integrated, isotropic homogeneous materials at the top and bottom of surfaces. A displacement-based finite element formulation associated with a novel third-order shear deformation plate theory without any requirement of shear correction factors is thus developed. The results show the effects of geometrical parameters, boundary conditions, uniform transverse pressure on the static bending of auxetic plates with negative Poisson’s ratio. Numerical examples are solved, then compared with the published literatures to validate the feasibility and accuracy of proposed analysis method.vi
dc.language.isoenvi
dc.publisherH. : ĐHQGHNvi
dc.relation.ispartofseriesVNU Journal of Science: Natural Sciences and Technology;-
dc.subjectStatic bendingvi
dc.subjectNew third-order shear deformation plate theoryvi
dc.subjectAuxetic materialvi
dc.titleStatic Bending Analysis of Auxetic Plate by FEM and a New Third-Order Shear Deformation Plate Theoryvi
dc.typeArticlevi
dc.identifier.doihttps://doi.org/10.25073/2588-1140/vnunst.5000-
Appears in Collections:Natural Sciences and Technology


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  • Full metadata record
    DC FieldValueLanguage
    dc.contributor.authorPham, Hong Cong-
    dc.contributor.authorPham, Minh Phuc-
    dc.contributor.authorHoang, Thi Thiem-
    dc.contributor.authorDuong, Tuan Manh-
    dc.contributor.authorNguyen, Dinh Duc-
    dc.date.accessioned2020-04-07T09:03:29Z-
    dc.date.available2020-04-07T09:03:29Z-
    dc.date.issued2020-
    dc.identifier.citationPham, H. C., et al. (2020). Static Bending Analysis of Auxetic Plate by FEM and a New Third-Order Shear Deformation Plate Theory. VNU Journal of Science: Natural Sciences and Technology, Vol. 36, No. 1 (2020) 90-99.vi
    dc.identifier.issn2588-1140-
    dc.identifier.urihttp://repository.vnu.edu.vn/handle/VNU_123/76895-
    dc.description.abstractIn this paper, a finite element method (FEM) and a new third-order shear deformation plate theory are proposed to investigate a static bending model of auxetic plates with negative Poisson’s ratio. The three – layer sandwich plate is consisted of auxetic honeycombs core layer with negative Poisson’s ratio integrated, isotropic homogeneous materials at the top and bottom of surfaces. A displacement-based finite element formulation associated with a novel third-order shear deformation plate theory without any requirement of shear correction factors is thus developed. The results show the effects of geometrical parameters, boundary conditions, uniform transverse pressure on the static bending of auxetic plates with negative Poisson’s ratio. Numerical examples are solved, then compared with the published literatures to validate the feasibility and accuracy of proposed analysis method.vi
    dc.language.isoenvi
    dc.publisherH. : ĐHQGHNvi
    dc.relation.ispartofseriesVNU Journal of Science: Natural Sciences and Technology;-
    dc.subjectStatic bendingvi
    dc.subjectNew third-order shear deformation plate theoryvi
    dc.subjectAuxetic materialvi
    dc.titleStatic Bending Analysis of Auxetic Plate by FEM and a New Third-Order Shear Deformation Plate Theoryvi
    dc.typeArticlevi
    dc.identifier.doihttps://doi.org/10.25073/2588-1140/vnunst.5000-
    Appears in Collections:Natural Sciences and Technology


  • document (10).pdf
    • Size : 787,62 kB

    • Format : Adobe PDF

    • View : 
    • Download : 


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