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Free vibration analysis of a non-uniform cantilever Timoshenko beam with multiple concentrated masses using DQEM

机译:使用DQEM分析具有多个集中质量的非均匀悬臂Timoshenko梁的自由振动

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In this paper, a differential quadrature element method (DQEM) is developed for free transverse vibration analysis of a non-uniform cantilever Timoshenko beam with multiple concentrated masses. Governing equations, compatibility and boundary conditions are formulated according to the differential quadrature rules. The compatibility conditions at the position of each concentrated mass are assumed as the continuity in the vertical displacement, rotation and bending moment and discontinuity in the transverse force due to acceleration of the concentrated mass. The effects of number, magnitude and position of the masses on the value of the natural frequencies are investigated. The accuracy, convergence and efficiency of the proposed method are confirmed by comparing the obtained numerical results with the analytical solutions of other researchers. The two main advantages of the proposed method in comparison with the exact solutions available in the literature are: 1) it is less time-consuming and subsequently moreefficient; 2) it is able to analyze the free vibration of the beams whose section varies as an arbitrary function which is difficult or sometimes impossible to solve with analytical methods.How to cite this paper Torabi, K., Afshari, H & Heidari-Rarani, M. (2013). Free vibration analysis of a non-uniform cantilever Timoshenko beam with multiple concentrated masses using DQEM.Engineering Solid Mechanics, 1(1), 9-20.
机译:本文提出了一种差分正交元方法(DQEM),用于具有多个集中质量的非均匀悬臂Timoshenko梁的自由横向振动分析。控制方程,兼容性和边界条件是根据微分正交规则制定的。假定每个集中质量的位置处的相容性条件为垂直位移,旋转和弯矩的连续性,以及由于集中质量的加速而引起的横向力的不连续性。研究了质量的数量,大小和位置对固有频率值的影响。通过将获得的数值结果与其他研究人员的解析解进行比较,证实了该方法的准确性,收敛性和效率。与文献中提供的精确解决方案相比,该方法的两个主要优点是:1)耗时少,效率更高; 2)能够分析截面随任意函数变化的梁的自由振动,这是用分析方法难以解决甚至有时无法解决的.Torabi,K.,Afshari,H&Heidari-Rarani, M.(2013)。使用DQEM分析具有多个集中质量的非均匀悬臂Timoshenko梁的自由振动。工程固体力学,1(1),9-20。

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