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An Analytical Study on Forced Vibration of Beams Carrying a Number of Two Degrees-of-Freedom Spring-Damper-Mass Subsystems

机译:带有两个自由度弹簧-阻尼器-质量子系统的梁的强迫振动的分析研究

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This paper presents an analytical solution for the forced vibration of beams carrying a number of two degrees-of freedom (DOF) spring-damper-mass (SDM) systems. The beam is divided into a series of distinct sub-beams at the spring connection points and the point of force action. The 2DOF SDM systems are replaced with a set of effective springs with complex stiffness, and the compatibility of the placement and the force at the common interface of two adjacent sub-beams is systematically organized. Then, the boundary conditions are enforced, and the governing matrix equation is formulated. Next, the closed-form expression for the frequency response function (FRF) was determined analytically. The presented method can simultaneously consider arbitrary boundary conditions and any number of 2DOF SDM systems. Furthermore, regardless of the number of subsystems, none of the associated matrices is larger than 4×4, which provides a significant computational advantage. To validate the accuracy and reliability of the proposed method, some results are compared with the corresponding results obtained using the conventional finite element method (FEM); good agreement is observed between the results of the two approaches. Finally, the effects of the system parameters on the vibration transmission in the beam and subsystem vibration reduction are studied.
机译:本文提出了一种分析方法,用于承载多个两个自由度(DOF)弹簧-阻尼器质量(SDM)系统的梁的强迫振动。梁在弹簧连接点和作用力点处分为一系列不同的子梁。 2DOF SDM系统由一组具有复杂刚度的有效弹簧代替,并且系统地组织了两个相邻子梁公共界面处的位置和力的兼容性。然后,加强边界条件,并制定控制矩阵方程。接下来,通过解析确定频率响应函数(FRF)的闭式表达式。提出的方法可以同时考虑任意边界条件和任意数量的2DOF SDM系统。此外,不管子系统的数量如何,任何关联的矩阵都不大于4×4,这提供了显着的计算优势。为了验证所提方法的准确性和可靠性,将一些结果与使用常规有限元方法(FEM)获得的相应结果进行了比较;两种方法的结果之间观察到良好的一致性。最后,研究了系统参数对梁中振动传递和子系统减振的影响。

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