Vibration Analysis of Damaged Viscoelastic Composite Sandwich Plate

Baali Messaoud
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Abstract

This paper presents a study of free and forced vibration of composite sandwich plate with and without damage using the finite element analysis developed under ANSYS APDL software. This modeling uses the 8-node shell 281 element to modelized the composite laminates of the top and bottom face sheets of the sandwich plate and the 20-node higher order solid 186 element to modelized the viscoelastic core. Two sets of boundaries are considered; Simply supported and clamped boundary conditions at all edges. The effect of damaged face sheets layers on natural frequencies, mode shapes, the frequency and transient responses of the sandwich plate is investigated. Numerical results show remarkable shifts of the natural frequencies, frequency and transient responses due to the presence of damage. It is concluded that the natural frequencies decreasing is due to the loss of structural stiffness. Natural frequencies of the sandwich plates are close to those issued from numerical results available in the literature.
受损粘弹性复合夹层板的振动分析
本文采用 ANSYS APDL 软件开发的有限元分析方法,对有损伤和无损伤复合材料夹层板的自由振动和受迫振动进行了研究。该模型使用 8 节点的壳 281 单元对夹层板上下面板的复合层压板进行建模,并使用 20 节点的高阶实体 186 单元对粘弹性夹芯进行建模。考虑了两组边界条件:所有边缘的简支撑和夹紧边界条件。研究了受损面片层对夹层板固有频率、模态振型、频率和瞬态响应的影响。数值结果表明,由于损伤的存在,固有频率、频率和瞬态响应发生了显著变化。结论是自然频率的降低是由于结构刚度的损失。夹层板的自然频率与文献中的数值结果接近。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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