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A generic type of frequency-domain spectral element model for the dynamics of a laminated composite plate

机译:层压复合板动力学的一种通用类型的频域频谱元素模型

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摘要

Various solution techniques have been developed in the last decades for accurate prediction of the dynamic responses of a laminated composite structure. The spectral element method (SEM) is well known as an exact solution method that provides extremely accurate dynamic responses even in the high-frequency region. In this study, we develop a spectral element model for a rectangular finite composite plate element. The present spectral element model is developed by modifying the boundary splitting method introduced in the previous studies of the authors. As a result, the four corner nodes of the rectangular finite composite plate element, which were inactive (fixed) in the previous studies, become active. Thus, the present spectral element model can be used as a generic type of finite element, which can be applied to any laminated composite plates with arbitrary boundary conditions. The accuracy and efficiency of the present spectral element model are evaluated by comparing its results with exact solutions and solutions using the commercial finite element analysis package, ANSYS. In addition, the vibration and wave characteristics are numerically investigated by varying the lay-ups of some examples of laminated composite plates with various geometries and boundary conditions. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在过去的几十年中,已经开发了各种解决方案技术来精确预测层压复合结构的动力响应。光谱元素法(SEM)是众所周知的精确解法,即使在高频区域也能提供极其精确的动态响应。在这项研究中,我们开发了矩形有限复合板单元的光谱单元模型。通过修改作者先前研究中引入的边界分裂方法,开发了当前的光谱元素模型。结果,在以前的研究中处于非活动状态(固定)的矩形有限复合板单元的四个角节点变为活动状态。因此,本光谱元素模型可以用作有限元的通用类型,可以应用于具有任意边界条件的任何层压复合板。通过将其结果与精确解和使用商业有限元分析软件包ANSYS的解决方案进行比较,可以评估当前光谱元素模型的准确性和效率。此外,通过改变具有不同几何形状和边界条件的层压复合板的一些示例的铺层,对振动和波动特性进行了数值研究。 (C)2017 Elsevier Ltd.保留所有权利。

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