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Stability and vibrations of a metal seven-layer rectangular plate with trapezoidal corrugated cores

机译:具有梯形波纹芯的金属七层矩形板的稳定性和振动

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The paper is devoted to mathematical modelling of multi-layered structures. The case of a metal seven-layer rectangular plate is considered. The plate is composed of a trapezoidal corrugated main core, two inner flat sheets, two trapezoidal corrugated cores of the faces and two outer flat sheets. The direction of the corrugation of the main core is orthogonal to the one of the face cores corrugations. The hypothesis of deformation of normal to middle surface of the plate after bending and the field of displacements and stresses is formulated. The plate is simply supported and subjected to a uniformly distributed compressive loads applied to the edges. Equations of motion are derived based on the Hamilton's principle. These equations are analytically solved for static or pulsating loads. The influence of the trapezoidal corrugation pitch of the cores on the critical loads and natural frequency of the plates is analysed. The results obtained form the analytical solution are compared with the results given by the proposed finite element model.
机译:本文致力于多层结构的数学建模。考虑金属七层矩形板的情况。该板由梯形波纹主芯,两个内部平板,两个端面的梯形波纹芯以及两个外部平板组成。主芯的波纹方向与面芯的波纹之一正交。提出了弯曲后板法向中表面变形的假说以及位移和应力场的假说。简单地支撑该板并使其受到施加在边缘上的均匀分布的压缩载荷。运动方程是根据汉密尔顿原理导出的。这些方程通过解析求解静载荷或脉动载荷。分析了铁心的梯形波纹节距对板的临界载荷和固有频率的影响。将解析解获得的结果与所提出的有限元模型给出的结果进行比较。

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