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首页> 外文期刊>European Physical Journal Plus >Nonlinear bending of third-order shear deformable carbon nanotube/fiber/polymer multiscale laminated composite rectangular plates with different edge supports
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Nonlinear bending of third-order shear deformable carbon nanotube/fiber/polymer multiscale laminated composite rectangular plates with different edge supports

机译:具有不同边缘支撑的三阶剪切可变形碳纳米管/纤维/聚合物多尺寸层压复合矩形板的非线性弯曲

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摘要

The geometrically nonlinear bending behavior of carbon nanotube/fiber/polymer multiscale laminated composite (CNT-FPMLC) rectangular plates with various edge conditions subjected to the uniform transverse mechanical loading is investigated. Based on the Reddy's third-order shear deformation plate theory and employing the von Karman hypotheses and fundamental lemma of calculus of variations, the governing equilibrium equations including the shear deformation effect and geometrical nonlinearity together with associated boundary conditions are developed. The fiber micromechanics and the Halpin-Tsai relations are employed to approximately calculate the material properties of multiscale composite. Also, the carbon nanotubes (CNTs) are assumed to be distributed uniformly and oriented arbitrarily through the epoxy resin matrix. For the large deflection analysis, first, the generalized differential quadrature (GDQ) method is used to discretize the differential governing equations and corresponding boundary conditions resulting in a set of nonlinear algebraic equations. Then, the pseudo-arclength continuation technique is utilized to numerically solve the resulting nonlinear parameterized equations and subsequently obtain the load-deflection curve of CNT-FPMLC rectangular plates with different edge supports. Several numerical results are provided to reveal the influences of the weight percentage of single-walled and multi-walled CNTs, CNT aspect ratio, volume fraction of fibers, length-to-thickness ratio of plate and boundary conditions on the nonlinear responses of the CNT-FPMLC plates.
机译:研究了碳纳米管/纤维/聚合物多尺度层压复合物(CNT-FPMLC)矩形板的几何非线性弯曲行为,具有经受均匀横向机械负荷的各种边缘条件。基于Reddy的三阶剪切变形板理论,采用von Karman假设和变形阶段的基本引理,开发了包括剪切变形效果和几何非线性以及相关边界条件的控制平衡方程。使用纤维微机械和Halpin-Tsai关系近似计算多尺度复合材料的材料性质。而且,假设碳纳米管(CNT)均匀地分布并通过环氧树脂基质任意地定向。对于大的偏转分析,首先,广义差分正交(GDQ)方法用于离散化差分控制方程和相应的边界条件,导致一组非线性代数方程。然后,伪arclencth延续技术用于数值上解决所得到的非线性参数化方程,随后获得具有不同边缘支撑的CNT-FPMLC矩形板的负载偏转曲线。提供了几个数值结果,以揭示单壁和多壁CNT,CNT纵横比,纤维的体积分数,板材长度比的重量百分比的影响,包括CNT的非线性响应的板条和边界​​条件-fpmlc板。

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