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Mathematical modelling of the stability of carbon nanotube-reinforced panels

机译:碳纳米管增强板稳定性的数学建模

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The present paper studies the stability analysis of the continuously graded CNT-Reinforced Composite (CNTRC) panel stiffened by rings and stringers. The Stiffened Panel (SP) subjected to axial and lateral loads is reinforced by agglomerated CNTs smoothly graded through the thickness. A two-parameter Eshelby-Mori-Tanaka (EMT) model is adopted to derive the effective material moduli of the CNTRC. The stability equations of the CNRTC SP are obtained by means of the adjacent equilibrium criterion. Notwithstanding most available literature in which the stiffener effects were smeared out over the respective stiffener spacing, in the present work, the stiffeners are modeled as Euler-Bernoulli beams. The Generalized Differential Quadrature Method (GDQM) is employed to discretize the stability equations. A numerical study is performed to investigate the influences of different types of parameters involved on the critical buckling of the SP reinforced by agglomerated CNTs. The results achieved reveal that continuously distributing of CNTs adjacent to the inner and outer panel's surface results in improving the stiffness of the SP and, as a consequence, inclining the critical buckling load. Furthermore, it has been concluded that the decline rate of buckling load intensity factor owing to the increase of the panel angle is significantly more sensible for the smaller values of panel angle.
机译:本文研究了戒指和桁条稳定的连续分级的CNT加强复合材料(CNTRC)面板的稳定性分析。通过厚度平滑地分级的附聚的CNT来加强对轴向和横向载荷进行轴向和横向载荷的加强面板(SP)。采用双参数eShelby-Mori-Tanaka(EMT)模型来导出CNTRC的有效材料模型。 CNRTC SP的稳定性方程通过相邻的均衡标准获得。尽管最多可用的文献,其中加强效应在各自的加强件间隔上涂抹,但在本作工作中,加强件被建模为Euler-Bernoulli梁。广义差分正交方法(GDQM)用于离散稳定方程。进行数值研究以研究不同类型参数的影响,这些参数涉及通过附聚的CNT加固的SP的关键屈曲。所实现的结果揭示了与内板和外板的表面相邻的CNT连续分布导致SP的刚度以及倾斜突出的屈曲负荷的刚度。此外,已经得出结论,由于面板角度的增加,由于面板角度的增加而言,屈曲负荷强度因子的下降率对于面板角度越小而明显。

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