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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Bending analysis of sandwich plates with composite face sheets and compliance functionally graded syntactic foam core
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Bending analysis of sandwich plates with composite face sheets and compliance functionally graded syntactic foam core

机译:具有复合面板和顺应性功能梯度句法泡沫芯的夹心板的弯曲分析

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In this paper, the problem of a rectangular plate with functionally graded soft core and composite face sheets is considered using high order sandwich plate theory. This theory applies no assumptions on the displacement and stress fields in the core. Face sheets were treated using classical theory and core was exposed to the theory of elasticity. Governing equations and boundary conditions are derived using principle of virtual displacement and the governing equations are based on eight primary variables including six displacements and two shear stresses. This solution is able to present localized displacements and stresses in places where concentrated loads are exerted to the structure since the displacements in the core can take a nonlinear form which could not be seen in the previous theories such as classical and higher order shear theories. This theory is suitable for rectangular plates under all types of loadings distributed or concentrated which can be different on upper and lower face sheets at the same point. The results were compared with the published literature using theory of elasticity and showed good agreement confirming the accuracy of the present theory. Subsequently, the solution for the core with functionally graded material is presented and effectively indicates positive role of functionally graded core.
机译:在本文中,使用高阶夹心板理论来考虑具有功能梯度软芯和复合面板的矩形板的问题。该理论对岩心的位移和应力场没有任何假设。使用经典理论对面板进行处理,并且将芯暴露于弹性理论。利用虚拟位移原理推导了控制方程和边界条件,该控制方程基于八个主要变量,包括六个位移和两个剪切应力。该解决方案能够在集中载荷施加到结构的位置上呈现局部位移和应力,因为岩心中的位移可以采用非线性形式,这在以前的理论(如经典理论和高阶剪切理论)中是看不到的。该理论适用于所有分布或集中载荷类型下的矩形板,这些载荷在同一点的上,下面板上可能不同。将结果与使用弹性理论的已发表文献进行比较,并显示出很好的一致性,证实了该理论的准确性。随后,提出了具有功能梯度材料的岩心解决方案,并有效地表明了功能梯度岩心的积极作用。

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