Investigating the bending and buckling behaviors of composite porous beams reinforced with carbon nanotubes and graphene platelets using a TRPIM path following mesh-free approach

被引:2
|
作者
Sitli, Yassir [1 ]
Elmhaia, Oussama [2 ]
Mesmoudi, Said [3 ]
Askour, Omar [3 ,4 ]
Rammane, Mohammed [5 ]
Hilali, Youssef [6 ,7 ]
Bourihane, Oussama [7 ]
机构
[1] Chouai Doukkali Univ, Fac Sci El Jadida, Lab Nucl Atom Mol Mech & Energetic Phys, Ben Maachou Rd,BP 20, El Jadida 24000, Morocco
[2] Hassan First Univ Settat, Ecole Natl Sci Appl, LAMSAD Lab, Berrechid 26100, Morocco
[3] Hassan First Univ Settat, Ecole Natl Sci Appl, LISA Lab, Berrechid 26100, Morocco
[4] Cadi Ayyad Univ, Natl Sch Appl Sci Safi, Math Comp Sci & Commun Syst Lab, BP 63, Safi 46000, Morocco
[5] Univ Ibn Zohr, Fac Sci Agadir, Dept Phys, Lab Mat Signals Syst & Phys Modeling, BP 8106, Agadir 80000, Morocco
[6] Hassan First Univ Settat, Fac Sci & Tech, Settat 26000, Morocco
[7] Univ Sidi Mohamed Ben Abdellah, Fac Sci & Technol Fez, Lab Mech Engn, Fes, Morocco
关键词
Beam; Tchebychev-radial point interpolation method; (TRPIM); High-order continuation technique (HOC); Improved FSDT; GPLRC beam; CNTRC beam; Buckling; Post-buckling; Porosity; NONLINEAR DYNAMIC-RESPONSE; FREE-VIBRATION ANALYSIS; CURVED SHALLOW SHELLS; TECHNOLOGY; LOAD;
D O I
10.1016/j.compstruc.2024.107492
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
The aim of the present work consists in investigating the nonlinear behavior of porous beams reinforced with graphene platelets (GPL) and supported carbon nanotubes (CNT), termed functionally graded graphene platelets reinforced composite beam (FG-GPLRC) and functionally graded nanotube carbon reinforced composite beam (FG-CNTRC), respectively. Notably, the distribution of GPL/CNT is explored in both uniform and non-uniform patterns across the beam's thickness. What sets this research apart is its utilization of a refined beam model as enhanced FSDT incorporating nonlinear shear terms which is a crucial advancement in accurately capturing the post-buckling response in certain boundary conditions, a feature lacking in the existing FSDT literature. Innovatively, the post-buckling load-deflection relationship is derived through the solution of governing equations incorporating cubic nonlinearity. This is achieved by employing Galerkin's method alongside a non-iterative high-order continuation technique based on the asymptotic numerical method coupled with the Tchebychevradial point interpolation method (TRPIM), using a path-following where the solutions are obtained branch-by- branch by eliminating the need for iterative processes. In essence, this research underscores the pivotal role of porosity and GPL/CNT reinforcement in shaping the post-buckling configuration of both perfect and imperfect nanocomposite beams, thereby advancing our understanding of structural behavior in porous nanocomposite materials. The findings of this study illuminate the significant influence of parameters such as porosity coefficient, porosity distribution, GPL/CNT distribution, and GPL-weight/CNT-volume fraction on the nonlinear buckling behavior of porous beams.
引用
收藏
页数:14
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