Free Vibration Analysis of a Tree Structure by the Transfer Influence Coefficient Method : 1st Report, Formulation for a Two-dimensional Tree Structure

T. Kondou, A. Sueoka, Y. Yasuda, D. Moon
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引用次数: 6

Abstract

The authors apply the transfer influence coefticient method to a two-dimensional tree structure, and formulate a general algorithm to analyse in-plane longitudinal and flexural coupled free vibration. The tree structure, which is mainly found in the F-shaped structure of machine tools, pipeline systems and so on, has some crooked parts and subsystems but has no closed loop in the system. It is modeled as a distributed mass system in the present algorithm. It is theoretically confirmed that some merits of the transfer influence coefficient method also hold for the two-dimensional tree structure; that is, boundary conditions are easily controlled by the spring constants, and false roots in the use of the bisection method as a solution to the frequency equation can readily be eliminated by using the values obtained in the computational process. The occurrence mechanism of false roots is discussed in detail.
用传递影响系数法分析树形结构的自由振动:第1报告,二维树形结构的公式
将传递影响系数法应用于二维树形结构,建立了平面内纵向和弯曲耦合自由振动分析的通用算法。树形结构主要存在于机床、管道系统等的f型结构中,它有一些弯曲的零件和子系统,但在系统中没有闭环。在本算法中,它被建模为一个分布质量系统。从理论上证实了传递影响系数法的一些优点也适用于二维树形结构;也就是说,边界条件很容易由弹簧常数控制,并且使用二分法作为频率方程的解时,可以很容易地通过计算过程中得到的值来消除假根。详细讨论了假根的产生机理。
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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