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首页> 外文期刊>Journal of Sound and Vibration >Study on the inertia effect of helical spring of the absorber on suppressing the dynamic responses of a beam subjected to a moving load
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Study on the inertia effect of helical spring of the absorber on suppressing the dynamic responses of a beam subjected to a moving load

机译:减振器螺旋弹簧抑制运动荷载作用下梁动力响应的惯性效应研究

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摘要

In the dynamic analysis of the classical absorber composed of a spring, a damper and a lumped mass, the mass of its helical spring (or spring mass) is usually neglected. The purpose of this paper is to present a modified absorber with inertia effect of the spring mass considered. In order to evaluate the vibration-reduction efficiency of the presented modified absorber, the forced vibration analyses of a single degree-of-freedom (dof) and a multiple dof structural systems are performed. The first analysis is to determine the dynamic magnification factor of a single dof spring mass system, respectively, attached by a classical absorber and a modified absorber and subjected to a harmonic excitation. The second analysis is to determine the maximum dynamic responses of a multiple dof pinned-pinned beam, respectively, attached by the last two kinds of absorbers and subjected to a moving concentrated load. Because the second analysis is conducted using the conventional finite element method (FEM), in additional to the mass matrix, damping matrix and stiffness matrix of the classical and modified absorbers, the expressions for calculating the optimum parameters of the last two absorbers associated with any order of vibration mode of the pinned-pinned beam are also derived based on the modal data obtained from the mode superposition methodology and the orthogonal property between the normal mode shapes. Numerical results reveal that the spring mass of the absorber has the effect of suppressing the maximum dynamic responses of the main structural system and should be considered in the formulation to agree with the practical situation. (c) 2006 Elsevier Ltd. All rights reserved.
机译:在对由弹簧,阻尼器和集总质量组成的经典减振器进行动力分析时,通常会忽略其螺旋弹簧的质量(或弹簧质量)。本文的目的是提出一种具有弹簧质量惯性效应的改进型减振器。为了评估所提出的改进型减振器的减振效率,进行了单自由度(dof)和多自由度结构系统的强制振动分析。第一个分析是确定单个自由度弹簧质量系统的动态放大系数,该系统分别由经典的吸收器和改进的吸收器连接并受到谐波激励。第二种分析是确定分别由最后两种吸收器附着并经受移动集中载荷的多自由度钉扎销钉梁的最大动态响应。因为第二次分析是使用常规有限元方法(FEM)进行的,所以除了经典和改进型吸收器的质量矩阵,阻尼矩阵和刚度矩阵之外,用于计算与任何其他吸收器相关的最后两个吸收器的最佳参数的表达式还基于从模态叠加方法获得的模态数据以及正常模态形状之间的正交特性,推导了被钉扎梁的振动模式的阶数。数值结果表明,减振器的弹簧质量具有抑制主要结构系统的最大动力响应的作用,在配方中应考虑其与实际情况相符。 (c)2006 Elsevier Ltd.保留所有权利。

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