Bending analysis of functionally graded porous nanocomposite beams based on a non-local strain gradient theory

被引:44
作者
Merzouki, Tarek [1 ]
Ahmed, Houari Mohammed Sid [2 ]
Bessaim, Aicha [2 ]
Haboussi, Mohamed [3 ]
Dimitri, Rossana [4 ]
Tornabene, Francesco [4 ]
机构
[1] Univ Versailles St Quentin, LISV, Velizy Villacoublay, France
[2] Univ Mustapha Stambouli Mascara, Lab Etud Struct & Mecan Mat, Mascara, Algeria
[3] Univ Paris 13, CNRS, LSPM, UPR 3407, Villetaneuse, France
[4] Univ Salento, Dept Innovat Engn, I-73100 Lecce, Italy
关键词
Finite-element method; functionally graded porous materials; non-local strain gradient theory; static analysis; variational formulation; REINFORCED COMPOSITE BEAMS; FREE-VIBRATION ANALYSIS; HIGHER-ORDER SHEAR; LAYER-WISE THEORY; WAVE-PROPAGATION; BUCKLING ANALYSIS; NONLINEAR VIBRATION; DEFORMATION-THEORY; PLATES; SHELLS;
D O I
10.1177/10812865211011759
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In the present work we study the static response of functionally graded (FG) porous nanocomposite beams, with a uniform or non-uniform layer-wise distribution of the internal pores and graphene platelets (GPLs) reinforcing phase in the matrix, according to three different patterns. The finite-element approach is developed here together with a non-local strain gradient theory and a novel trigonometric two-variable shear deformation beam theory, to study the combined effects of the non-local stress and strain gradient on the FG structure. The governing equations of the problem are solved introducing a three-node beam element. A comprehensive parametric study is carried out on the bending behavior of nanocomposite beams, with a particular focus on their sensitivity to the weight fraction and distribution pattern of GPLs reinforcement, as well as to the non-local scale parameters, geometrical properties, and boundary conditions. Based on the results, it seems that the porosity distribution and GPLs pattern have a meaningful effect on the structural behavior of nanocomposite beams, where the optimal response is reached for a non-uniform and symmetric porosity distribution and GPLs dispersion pattern within the material.
引用
收藏
页码:66 / 92
页数:27
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