用中和剂被动控制波传播的减振方法

Mori Atsuo, Yuichi Matsumura, H. Izumiya
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摘要

在最近的机器结构中,子系统的尺寸远远小于整个结构。因此,子系统的柔度由感兴趣频率上的刚体模态控制。在这种情况下,即使在连接处有多个自由度,也只有少数几个自由度的传递力支配着整个结构的共振。因此,基于传动力存在一个或两个主导自由度的对策是有效的。然后,在本研究中,组织了在单自由度传动力占主导地位的情况下的设计方法。提出了一种利用基于频响的子结构和中和器对整体结构的振动噪声进行抑制的方法。作为本研究的原创观点,在只能对子系统进行结构修改的限制下,它是一种仅针对子系统的方法,用于在单个目标频率下降低整个结构的振动。采用基于频响的子结构来识别两个刚性耦合系统的耦合特性。采用中和器在子系统上的传输路径上设置虚拟固定端,实现路径上波的完美反射。因此,从子系统的激励自由度到整个结构在目标频率上的评估自由度的振动传递和波传播理论上为零。由于该方法的滥用,有可能引起整个系统的共振,但假设整个结构存在一定的阻尼,该方法对任何整体结构都是有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vibration reduction method using passive control of wave propagation by a neutralizer
On recent machine structures, the size of subsystems is far smaller than the whole structure. Therefore, the compliance of a subsystem is dominated by a rigid body mode at the frequency of interest. In case like this, even if degrees of freedom at the connection are multiple, few degrees of freedom of transmission forces dominate the resonance of a whole structure. Therefore, countermeasure based on existence of one or two dominant degrees of freedom of transmission forces is effective. Then, in this study, a design method in case that a single degree of freedom transmission force is dominant, is organized. A countermeasure method for vibration and noise of a whole structure using FRF based sub-structuring and a neutralizer is proposed. As an original viewpoint of this study, with a restriction that only subsystems can be structurally modified, it is an approach at subsystems only, for reducing vibration of a whole structure at a single target frequency. FRF based sub-structuring is adopted to identify coupling characteristics of two rigidly coupled systems. Neutralizer is adopted to set up virtual fixing end at a transmission path on subsystems, to realize perfect reflection of wave motion at the path. As a result, vibration transmission and wave propagation from an exciting degree of freedom on a subsystem to an evaluating degree of freedom on a whole structure at a target frequency is theoretically zero. There were some worries to occur resonance on the whole system as abuses of the proposed method, but assuming that there is some damping at whole structure, the method proved to be effective on any whole structure.
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