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首页> 外文期刊>Journal of Sound and Vibration >Analysis of wave propagation in a thin composite cylinder with periodic axial and ring stiffeners using periodic structure theory
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Analysis of wave propagation in a thin composite cylinder with periodic axial and ring stiffeners using periodic structure theory

机译:基于周期性结构理论的薄复合圆柱体中具有周期性轴向和环形加劲肋的波传播分析

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摘要

Wave propagation characteristics of a thin composite cylinder stiffened by periodically spaced ring frames and axial stringers are investigated by an analytical method using periodic structure theory. It is used for calculating propagation constants in axial and circumferential directions of the cylindrical shell subject to a given circumferential mode or axial half-wave number. The propagation constants corresponding to several different circumferential modes and/or half-wave numbers are combined to determine the vibrational energy ratios between adjacent basic structural elements of the two-dimensional periodic structure. Vibration analyses to validate the theoretical development have been carried out on sufficiently detailed finite element model of the same dimension and configuration as the stiffened cylinder and very good agreement is obtained between the analytical and the dense finite element results. The effects of shell material properties and the length of each periodic element on the wave propagation characteristics are also examined based on the current analytical approach.
机译:通过使用周期性结构理论的分析方法,研究了由周期性间隔的环形框架和轴向桁条加固的复合材料薄圆柱的波传播特性。它用于计算圆柱壳在给定的圆周模或轴向半波数的作用下在轴向和圆周方向上的传播常数。组合对应于几种不同圆周模式和/或半波数的传播常数,以确定二维周期性结构的相邻基本结构元件之间的振动能量比。在足够详细的有限元模型上进行了振动分析,以验证理论发展,该有限元模型的尺寸和构造与加筋圆柱体相同,并且在分析结果和致密有限元结果之间取得了很好的一致性。基于当前的分析方法,还研究了壳材料特性和每个周期元素的长度对波传播特性的影响。

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