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首页> 外文期刊>Advanced Composite Materials: The Official Journal of the Japan Society of Composite Materials >Vibration characteristics of composite sandwich plates and layup optimization of their laminated FRP composite faces
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Vibration characteristics of composite sandwich plates and layup optimization of their laminated FRP composite faces

机译:复合材料夹芯板的振动特性及其层压玻璃钢复合面的铺放优化

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摘要

This paper examines the vibration characteristics of rectangular, symmetric composite sandwich plates and the layup optimization of their top and bottom laminated FRP composite faces. The honeycomb core is modeled as a thick plate whose transverse shear deformation is taken into consideraion based on a higher-order shear deformation theory, and the top and bottom laminated FRP composite faces are modeled as a very thin sheet. A two-dimensional finite element method is developed using an eight-node isoparametric element. First, the fundamental frequency of the composite sandwich plate is discussed in the subspace of four in-plane lamination parameters of the laminated FRP composite face. Next, the layup optimization of the laminated FRP composite face for maximizing the fundamental frequency of the composite sandwich plate is performed by a nonlinear mathematical programming method, and the optimum laminate configuration of the laminated FRP composite face is determined.
机译:本文研究了矩形对称复合夹层板的振动特性,以及其上下层压玻璃钢复合面的铺放优化。基于高阶剪切变形理论,将蜂窝状芯建模为厚板,将其横向剪切变形考虑在内,并将顶部和底部层压FRP复合材料表面建模为非常薄的薄片。使用八节点等参单元开发了二维有限元方法。首先,在层压玻璃钢复合面的四个面内层压参数的子空间中讨论了复合夹层板的基频。接下来,通过非线性数学编程方法进行用于使复合夹层板的基频最大化的层压FRP复合面的层叠优化,并且确定层压FRP复合面的最佳层压构造。

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