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首页> 外文期刊>Journal of Sound and Vibration >BENDING AND FORCED VIBRATION RESPONSE OF A CLAMPED ORTHOTROPIC THICK PLATE AND SANDWICH PANEL
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BENDING AND FORCED VIBRATION RESPONSE OF A CLAMPED ORTHOTROPIC THICK PLATE AND SANDWICH PANEL

机译:正交各向异性厚板和夹心板的弯曲和强迫振动响应

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摘要

A closed-form solution for the forced response of an orthotropic thick plate and sandwich panel has been developed and is presented in this paper. The paper outlines the methodology and develops the formulation to enable the solution to be derived. A novel truss-core sandwich panel is introduced and a method is outlined in which the panel is represented as an equivalent homogeneous orthotropic thick plate continuum. The 3-D dynamic finite element method is one of the most versatile developments of the 20th century. However, the software is not as accessible or as user-friendly for engineers who are not trained in such analytical tools. Therefore, alternative methods of analysis must be found, especially in the dynamic assessment of thin-walled truss-core sandwich panels. One way is to transform the sandwich structure into an equivalent homogeneous orthotropic thick plate continuum and to conduct the analysis on the equivalent model. The authors have derived the necessary elastic constants to hasten this transformation. In this paper, the derived elastic constants are used with closed-form solution to determine the bending and forced vibration response of a clamped truss-core sandwich panel, represented as a homogeneous orthotropic thick plate continuum. The Rayleigh-Ritz method is employed for the closed-form solution and the forced response is determined using Duhamel's integral. Admissible functions are taken as a series of products of beam mode-shape functions in the two orthogonal directions. The beam function in either direction is derived from the corresponding beam eigenvalue problem. Numerical examples, which include the influence of transverse shear on the response, show that the closed-form solution agrees with analytical and numerical data available in the literature and also with 3-D finite element results.
机译:提出了一种用于正交各向异性厚板和夹心板强迫响应的封闭形式解决方案,并在本文中进行了介绍。本文概述了方法,并制定了解决方案,以便能够得出解决方案。介绍了一种新颖的桁架芯夹心板,并概述了一种将板表示为等效均质正交各向异性厚板连续体的方法。 3-D动态有限元方法是20世纪最通用的技术之一。但是,对于未接受过此类分析工具培训的工程师而言,该软件的访问性或用户友好性不高。因此,必须找到替代的分析方法,尤其是在薄壁桁架芯夹心板的动态评估中。一种方法是将夹心结构转换为等效的均质正交各向异性厚板连续体,然后对等效模型进行分析。作者已经得出了必要的弹性常数,以加快这种转换。在本文中,导出的弹性常数与封闭形式的解决方案一起使用,以确定夹持的桁架芯夹芯板的弯曲和强迫振动响应,表示为均质的正交各向异性厚板连续体。封闭形式的解决方案采用Rayleigh-Ritz方法,并使用Duhamel积分确定强制响应。容许函数被视为两个正交方向上光束模式形状函数的一系列乘积。从相应的光束特征值问题可以得出任一方向的光束函数。包括横向剪力对响应的影响在内的数值例子表明,闭合形式的解与文献中可用的分析和数值数据以及3-D有限元结果一致。

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