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Vibration analysis of mobile phone mast system by Rayleigh method

机译:手机桅杆系统振动的瑞利法分析

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To study the vibration of beams and columns, discretization techniques are required because such structures are continuous systems with infinite degrees of freedom. However, one can associate such systems to a system with a single degree of freedom, restricting the form to which the system will deform and describing their properties as a function of generalized coordinates. This technique is called the Rayleigh method. However, actual structures are more complex than simple beams and columns because their properties vary along their length. The objective of this work is to apply the technique recommended by Rayleigh to actual structures and find a single equation and correction factor that can be used to resolve practical problems in engineering. The structural elements selected for this study are metallic high-slenderness poles, for which the frequency of the first vibration mode were calculated analytically, as well as by finite element method-based computer modeling for comparative purposes. The results indicate that the analytical solution is 16% greater and 1% minor than the computational solution, and correction factors of 1.4 and 1.32 were found, respectively.
机译:为了研究梁和柱的振动,需要离散化技术,因为这种结构是具有无限自由度的连续系统。但是,可以将此类系统与具有单个自由度的系统相关联,从而限制系统变形的形式,并根据广义坐标来描述其属性。该技术称为瑞利方法。但是,实际结构比简单的梁和柱更复杂,因为它们的特性沿其长度变化。这项工作的目的是将瑞利推荐的技术应用于实际结构,并找到可用于解决工程中实际问题的单个方程式和校正因子。本研究选择的结构元件是金属高细长杆,通过分析计算出其第一振动模式的频率,并通过基于有限元方法的计算机建模进行比较。结果表明,分析解决方案比计算解决方案大16%,小1%,校正系数分别为1.4和1.32。

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