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首页> 外文期刊>Composite Structures >Higher-order Layerwise Laminate Theory For The Prediction of Interlaminar Shear Stresses In Thick Composite and Sandwich Composite Plates
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Higher-order Layerwise Laminate Theory For The Prediction of Interlaminar Shear Stresses In Thick Composite and Sandwich Composite Plates

机译:预测复合材料和夹心复合材料板层间剪应力的高阶分层层压理论

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摘要

A higher-order layerwise theoretical framework is presented, which enables prediction of the static response of thick composite and sandwich composite plates. The displacement field in each discrete layer through the thickness of the laminate includes quadratic and cubic polynomial distributions of the in-plane displacements, in addition to the linear approximations assumed by linear layerwise the- ories. In-plane and interlaminar shear stiffness matrices of each discrete layer are formulated and interlaminar shear stress compatibility conditions are subsequently imposed to ensure continuity of interlaminar shear stresses through the thickness. A Ritz-type exact solution is further implemented to yield the structural response of thick composite and sandwich composite plates. The advantage of the present formulation in comparison to linear layerwise theories lies in the small number of discrete layers used to model the thick composite laminate through-thickness and in the prediction of interlaminar shear stresses at the interface.
机译:提出了一个高阶的分层理论框架,它可以预测厚复合板和夹心复合板的静态响应。除线性层理论假设的线性近似值外,贯穿层压板厚度的每个离散层中的位移场还包括平面内位移的二次多项式和三次多项式分布。配制每个离散层的面内和层间剪切刚度矩阵,并随后施加层间剪切应力相容性条件,以确保层间剪切应力在整个厚度上的连续性。进一步实施Ritz型精确解决方案,以产生厚复合板和夹心复合板的结构响应。与线性分层理论相比,本发明配方的优点在于用于建模厚的复合层压板的贯穿厚度的离散层数量少,并且在界面处的层间剪切应力的预测中。

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