Static finite element analysis of thin laminated strain gradient nanoplates in hygro-thermal environment

被引:0
|
作者
M. Bacciocchi
N. Fantuzzi
A. J. M. Ferreira
机构
[1] University of San Marino,DESD Department
[2] University of Bologna,DICAM Department
[3] University of Porto,Faculty of Engineering
来源
关键词
Finite element method; Hygro-thermal environment; Strain gradient theory; Thin plates; Conforming and nonconforming formulations;
D O I
暂无
中图分类号
学科分类号
摘要
The manuscript aims to investigate the static behavior of laminated nanoplates in hygro-thermal environment. The theoretical framework is based on the Kirchhoff hypothesis for thin structures including the effect of material length scales, which is described by a nonlocal model. For this purpose, the plane stress constitutive laws for laminates are enriched by a size-dependent parameter according to the principles of strain gradient theory. The variational form of such a peculiar theoretical formulation is developed to obtain the corresponding finite element (FE) model, due to the lack of similar numerical approaches in the literature. The difficulties arisen by the presence of higher-order derivatives of the displacements are overcome by using Hermite interpolating polynomials. Conforming and nonconforming FE formulations are presented to this aim. A broad validation procedure is carried out in terms of displacement and stress analysis to verify the accuracy of the approach. The comparison is accomplished taking into account the analytical solution given by the Navier methodology for cross-ply and angle-ply simply supported plates in hygro-thermal environment. The general model allows to extend the analysis to various boundary conditions and lamination schemes.
引用
收藏
页码:969 / 992
页数:23
相关论文
共 50 条
  • [1] Static finite element analysis of thin laminated strain gradient nanoplates in hygro-thermal environment
    Bacciocchi, M.
    Fantuzzi, N.
    Ferreira, A. J. M.
    CONTINUUM MECHANICS AND THERMODYNAMICS, 2021, 33 (04) : 969 - 992
  • [2] Finite element solution of vibrations and buckling of laminated thin plates in hygro-thermal environment based on strain gradient theory
    Bacciocchi, Michele
    Fantuzzi, Nicholas
    Luciano, Raimondo
    Tarantino, Angelo Marcello
    MECHANICS OF ADVANCED MATERIALS AND STRUCTURES, 2023, 30 (21) : 4383 - 4396
  • [3] Hygro-thermal vibrations and buckling of laminated nanoplates via nonlocal strain gradient theory
    Monaco, Giovanni Tocci
    Fantuzzi, Nicholas
    Fabbrocino, Francesco
    Luciano, Raimondo
    COMPOSITE STRUCTURES, 2021, 262 (262)
  • [4] Trigonometric Solution for the Bending Analysis of Magneto-Electro-Elastic Strain Gradient Nonlocal Nanoplates in Hygro-Thermal Environment
    Tocci Monaco, Giovanni
    Fantuzzi, Nicholas
    Fabbrocino, Francesco
    Luciano, Raimondo
    MATHEMATICS, 2021, 9 (05)
  • [5] Nonlinear static analysis of laminated composite beams under hygro-thermal effect
    Akbas, Seref D.
    STRUCTURAL ENGINEERING AND MECHANICS, 2019, 72 (04) : 433 - 441
  • [6] Hygro-thermal Finite Element Analysis of Green Stacked Die Package
    Hua, Z. K.
    Li, C. Y.
    Zhang, J. H.
    Luo, Y. X.
    Cao, L. Q.
    32ND IEEE/CPMT INTERNATIONAL ELECTRONIC MANUFACTURING TECHNOLOGY SYMPOSIUM, 2007, : 57 - +
  • [7] Finite element analysis of Hygro-thermal induced failure in plastic packages
    Sun, N
    Lin, DC
    Yang, DG
    FIFTH INTERNATIONAL CONFERENCE ON ELECTRONIC PACKAGING TECHNOLOGY, PROCEEDINGS, 2003, : 381 - 385
  • [8] Hygro-thermal mechanical analysis of flip chip package by finite element method
    Niu, Xiao-yan
    Li, Zhi-gang
    Yuan, Guo-zheng
    Shu, Xue-feng
    PROCEEDINGS OF THE 5TH INTERNATIONAL CONFERENCE ON NONLINEAR MECHANICS, 2007, : 829 - 832
  • [9] Semi-analytical static analysis of nonlocal strain gradient laminated composite nanoplates in hygrothermal environment
    Tocci Monaco G.
    Fantuzzi N.
    Fabbrocino F.
    Luciano R.
    Journal of the Brazilian Society of Mechanical Sciences and Engineering, 2021, 43 (05):
  • [10] Static stability analysis of double-layer graphene sheet system in hygro-thermal environment
    Farzad Ebrahimi
    Mohammad Reza Barati
    Microsystem Technologies, 2018, 24 : 3713 - 3727