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Free Vibration Characteristic of Multilevel Beam Based on Transfer Matrix Method of Linear Multibody Systems

机译:基于线性多体系统传递矩阵法的多能级梁自由振动特性

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In this paper, an approach based on transfer matrix method of linear multibody systems (MS-TMM) is developed to analyze the free vibration of a multilevel beam, coupled by spring/dashpot systems attached to them in-span. The Euler-Bernoulli model is used for the transverse vibration of the beams, and the spring/dashpot system represents a simplified model of a viscoelastic material. MS-TMM reduces the dynamic problem to an overall transfer equation which only involves boundary state vectors. The state vectors at the boundaries are composed of displacements, rotation angles, bending moments, and shear forces, which are partly known and partly unknown, and end up with reduced overall transfer matrix. Nontrivial solution requires the coefficient matrix to be singular to yield the required natural frequencies. This paper implements two novel algorithms based on the methodology by reducing the zero search of the reduced overall transfer matrix's determinate to a minimization problem and demonstrates a simple and robust algorithm being much more efficient than direct enumeration. The proposal method is easy to formulate, systematic to apply, and simple to code and can be extended to complex structures with any boundary conditions. Numerical results are presented to show the validity of the proposal method against the published literature.
机译:本文提出了一种基于线性多体系统传递矩阵法(MS-TMM)的方法来分析多级梁的自由振动,并通过跨接在其上的弹簧/阻尼系统进行耦合。 Euler-Bernoulli模型用于梁的横向振动,而弹簧/阻尼系统则代表了粘弹性材料的简化模型。 MS-TMM将动态问题简化为只包含边界状态向量的整体传递方程。边界处的状态向量由位移,旋转角,弯矩和剪切力组成,这些位移,旋转角,弯矩和剪切力部分已知,部分未知,最终导致总传递矩阵减小。非平凡解需要系数矩阵奇异以产生所需的固有频率。本文通过将归约后的总传输矩阵的求零减少为最小化问题,从而实现了基于该方法的两种新颖算法,并证明了一种简单而健壮的算法比直接枚举更为有效。该提议方法易于制定,系统地应用并且易于编码,并且可以扩展到具有任何边界条件的复杂结构。数值结果表明,该方法相对于已发表的文献是有效的。

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