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Thermal postbuckling analysis of temperature dependent delaminated composite plates

机译:温度相关分层复合板的热后屈曲分析

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This paper deals with the nonlinear thermal stability of composite plate with embedded and through-the-width delaminations under uniform temperature rise. The formulation is established within the framework of the higher order shear deformation theory by taking into account the von Karman geometrical nonlinearity. The thermomechanical properties of the laminates are assumed to be temperature-dependent. The nonlinear equilibrium equations derived by the minimum total potential energy principle, are solved using the Rayleigh-Ritz method along with the Newton-Raphson iterative procedure. For modeling the embedded and through-the-width delaminations, the plate is divided into a number of smaller regions. The proposed model is capable of analyzing both local buckling of the delaminated base laminate and sublaminate as well as the global buckling of the plate. Numerical results are presented to provide an insight into effects of delamination type, size of delamination and boundary condition on the critical buckling temperature difference, buckling mode and postbuckling behavior of the composite plate. It is found that presence of delamination leads to substantial reduction in the load carrying capacity of the composite plate. Furthermore, the results reveal that the buckling mode could be changed depending on the delamination area. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文研究了在均匀温度升高下具有嵌入式和全宽度分层的复合板的非线性热稳定性。考虑到von Karman几何非线性,在高阶剪切变形理论的框架内建立了公式。假定层压板的热机械性能是温度依赖性的。使用Rayleigh-Ritz方法以及Newton-Raphson迭代程序求解了由最小总势能原理导出的非线性平衡方程。为了对嵌入的和整个宽度的分层进行建模,将板划分为多个较小的区域。所提出的模型能够分析分层基础层压板和子层压板的局部屈曲以及板的整体屈曲。数值结果表明了分层类型,分层大小和边界条件对复合板临界屈曲温度差,屈曲模式和后屈曲行为的影响。发现分层的存在导致复合板的承载能力大大降低。此外,结果表明屈曲模式可以根据分层区域而改变。 (C)2015 Elsevier Ltd.保留所有权利。

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