Mode frequency analysis of antisymmetric angle-ply laminated composite stiffened hypar shell with cutout

Puja Basu Chaudhuri, A. Mitra, S. Sahoo
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引用次数: 4

Abstract

Abstract This article deals with finite element method for the analysis of antisymmetric angle-ply laminated composite hypar shells (hyperbolic paraboloid bounded by straight edges) that applies an eight-noded isoparametric shell element and a three-noded beam element to study the mode-frequency analysis of stiffened shell with cutout. Two-, 4-, and 10-layered antisymmetric angle-ply laminations with different lamination angles are considered. Among these, 10-layer antisymmetric angle-ply shells are considered for elaborate study. The shells have different boundary conditions along its four edges. The formulation is based on the first-order shear deformation theory. The reduced method of eigen value solution is chosen for the undamped free vibration analysis. The first five modes of natural frequency are presented. The numerical studies are conducted to determine the effects of width-to-thickness ratio (b/h), degree of orthotropy (E11/E22), and fiber orientation angle (θ) on the nondimensional natural frequency. The results reveal that free vibration behavior mainly depends on the number of boundary constraints rather than other parametric variations such as change in fiber orientation angle and increase in degree of orthotropy and width-to-thickness ratio.
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带切口的反对称角层合复合材料加筋壳模态频率分析
摘要本文采用八节点等参壳单元和三节点梁单元对具有切口的加肋壳体进行模态频率分析,研究了反对称角层合复合材料半刚性壳体(直边双曲抛物面)的有限元分析方法。考虑了具有不同层压角度的两层、四层和十层反对称角层压板。其中,考虑了10层反对称角层板进行详细研究。这些壳沿其四条边具有不同的边界条件。该公式基于一阶剪切变形理论。在无阻尼自由振动分析中,选择了特征值解的简化方法。给出了固有频率的前五种模式。进行了数值研究,以确定宽厚比(b/h)、正交度(E11/E22)和纤维取向角(θ)对无量纲固有频率的影响。结果表明,自由振动行为主要取决于边界约束的数量,而不是其他参数变化,如纤维取向角的变化、正交度和宽厚比的增加。
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Mechanics and Mechanical Engineering
Mechanics and Mechanical Engineering Engineering-Automotive Engineering
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