Design of Multi-Mode Low-Frequency Vibration Suppressor Based on Dynamic Vibration Absorption Principle

Yipeng Cheng, Zilong Peng, Huabing Wen, Hao Song, Zixian Cui
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Abstract

Dynamic vibration absorbers (DVA) are commonly studied for their advantage in controlling the low-frequency resonance peaks, but most relevant studies are still at the stage of theoretical innovation such as nonlinearity parameters and active control. Nevertheless, there are few kinds of vibration suppression structures based on dynamic vibration absorption principle. In this paper, therefore, we proposed a novel vibration suppressor inspired by the DVA theory. The vibration of a four-sided simply-supported thin plate attached with the DVAs array was studied by applying the modal superposition method. A preliminary suppressor model was proposed with rubber and steel as its main material, and whose modal frequency is calculated theoretically. Geometric and material parameters of each component were adjusted based on the DVA parameters. The vibration control effect of the suppressors array was verified through simulation and by experiment. Results showed that three resonance peaks were suppressed, and it was obvious after the attachment to the DVAs array or suppressors array. The contact form between the suppressors array and the plate is surface contact, which is different from the point contact between the DVAs array and the plate, therefore the vibration control effect of vibration suppressors array is more obvious.
基于动态吸振原理的多模低频减振器设计
动态吸振器(DVA)因其在控制低频共振峰方面的优势而受到广泛的研究,但大多数相关研究还停留在非线性参数和主动控制等理论创新阶段。然而,基于动态吸振原理的减振结构种类很少。因此,本文提出了一种受DVA理论启发的新型减振器。采用模态叠加法研究了连接DVAs阵列的四边简支薄板的振动问题。提出了以橡胶和钢为主要材料的抑制器的初步模型,并对其模态频率进行了理论计算。根据DVA参数调整各部件的几何参数和材料参数。通过仿真和实验验证了该抑制器阵列的振动控制效果。结果表明,三个共振峰均被抑制,且附着在DVAs阵列或抑制子阵列后效果明显。抑振器阵列与板的接触形式为面接触,不同于DVAs阵列与板的点接触,因此抑振器阵列的减振效果更为明显。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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