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Post Buckling Analysis of Multiple Delaminated Composite Plate

机译:多层复合板的屈曲后分析

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This paper presents an elastic post buckling analysis of an axially loaded beam-plate with two central across-the-width delaminations located at arbitrary depths. The analysis is based on the nonlinear beam equations, combined with the appropriate kinematic continuity and equilibrium conditions. A perturbation technique is employed, which transforms the nonlinear equations into a sequence of linear equations. A closed form description of post buckling behavior of the plate is thus obtained, based on this method. It is shown that with two delaminations, both the maximum deflection and the internal load of the first buckled (top) subplate increase as the external load increaqses. Of particular interest is the redistribution of load among subplates, which keeps the increase rate of internal load of the top buckled subplate much less than that of the external load. In other words, the load of the buckled subplate is close to the critical value even though the externally applied load is much larger than the critical load. Good agreements is obtained in a comparison of the calculation results with available finite element data.
机译:本文提出了一个轴向加载的梁板的弹性后屈曲分析,该梁板具有两个位于任意深度的中心跨宽度分层。该分析基于非线性梁方程,并结合了适当的运动学连续性和平衡条件。采用摄动技术,将非线性方程式转换为线性方程式序列。基于该方法,从而获得了板的屈曲后行为的封闭形式描述。结果表明,经过两次分层,第一挠曲(顶部)子板的最大挠度和内部载荷都随着外部载荷的增加而增加。特别令人感兴趣的是子板之间的载荷的重新分配,这使顶部弯曲子板的内部载荷的增长率远小于外部载荷的增长率。换句话说,即使外部施加的载荷远大于临界载荷,弯曲的底板的载荷也接近临界值。通过将计算结果与可用的有限元数据进行比较,可以获得良好的一致性。

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