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首页> 外文期刊>Journal of Sound and Vibration >VIBRATIONAL MODES OF THICK CYLINDERS OF FINITE LENGTH
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VIBRATIONAL MODES OF THICK CYLINDERS OF FINITE LENGTH

机译:有限长厚圆柱体的振动模式

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The natural frequencies and mode shapes of finite length thick cylinders are of considerable engineering importance. A comprehensive classification of the modes of such thick cylinders, based on three-dimensional mode shapes, is presented in this paper. In addition to the 5 groups consisting of pure radial, radial motion with radial shearing, extensional, axial bending, and global modes, as previously adopted for thin cylinders, a further sixth circumferential category is proposed. This classification, together with the numbers of both the circumferential and the longitudinal nodes, is sufficient to identify each mode of a finite length thick cylinder. The classification for the modes of thick cylinders is applied to four groups of cylinders whose radial thickness to median radius ratio varies from 0.1 to 0.4. Each group contains a set of 8 cylinders with similar inside and outside diameters, but with different axial lengths; these were used to verify the validity of the classifications, and to study the effects of varying axial length and varying radial thickness on each of the different types of modes. Analytical finite element analysis was applied to all four groups, and experimental analysis was applied to those cylinders whose radial thickness to the medium radius ratio was 0.4. The results support the method of classification, although very short cylinders behave essentially as annular circular plates. The effects of varying axial length and radial thickness on the vibrational modes are such that all modes can be broadly categorized as either pure radial modes, or non-pure radial modes. The natural frequencies of the former are dependent upon only the radial dimensions of the models, while the natural frequencies of the latter are dependent upon both axial length and radial thickness. (C) 1996 Academic Press Limited [References: 13]
机译:有限长度厚圆柱体的固有频率和模态形状在工程上具有重要意义。本文基于三维模式形状,对此类厚圆柱体的模式进行了全面分类。除了以前用于薄圆柱体的5个组(包括纯径向运动,具有径向剪切力的径向运动,拉伸,轴向弯曲和整体模式)外,还提出了第六个圆周类别。这种分类以及圆周节点和纵向节点的数量,足以识别有限长度厚圆柱体的每种模式。厚圆柱体模式的分类适用于四组圆柱体,其径向厚度与中值半径之比在0.1到0.4之间变化。每组包含一组8个圆柱体,它们的内径和外径相似,但轴向长度不同。这些被用来验证分类的有效性,并研究改变轴向长度和改变径向厚度对每种不同模式的影响。对所有四个组都应用了分析有限元分析,并对径向厚度与中半径之比为0.4的圆柱体进行了实验分析。尽管非常短的圆柱体基本上表现为环形圆形板,但结果支持分类方法。改变轴向长度和径向厚度对振动模式的影响是,可以将所有模式大致分为纯径向模式或非纯径向模式。前者的固有频率仅取决于模型的径向尺寸,而后者的固有频率取决于轴向长度和径向厚度。 (C)1996 Academic Press Limited [参考号:13]

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