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Study and Analysis of Anti Vibratory Passive and Active Methods Applied to Complex Mechanical System

机译:复杂机械系统抗振动无源和活性方法的研究与分析

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摘要

This paper studies problematic of a mechanical system composed of different coupled parts submitted to a high speed shock and proposes analysis of anti vibratory passive and active methods based on an experimental and theoretical coupled approach. After a shock, different parts of the system oscillate. If one of them is excited at a particular frequency, such as its proper frequency, important oscillations appear and can lead to the deterioration of the system by introducing important stresses. In this paper, we propose an analysis in order to understand this kind of problem and what we can do to avoid it. Firstly, we discuss problematic and we expose the studied system. In a second time, we develop two approaches of modeling that allow us to understand the phenomenon by carrying out numerical simulations. Then cross checking of model is completed via experimental study on drop test bench. Passive minimization method of vibrations based on experimental and theoretical coupled approach is exposed. Finally, a comparative analysis of different methods of control and experimental results of controlled system are presented.
机译:本文研究了由提交到高速冲击的不同耦合零件组成的机械系统问题,并根据实验和理论耦合方法提出了抗振动无源和活性方法的分析。经过冲击后,系统的不同部分振荡。如果其中一个以特定频率兴奋,例如其适当的频率,则出现重要的振荡,并且可以通过引入重要的应力来导致系统的恶化。在本文中,我们提出了一个分析,以便理解这种问题以及我们可以做些什么来避免它。首先,我们讨论问题,我们暴露了研究的系统。在第二次,我们开发了两种建模方法,使我们能够通过进行数值模拟来理解现象。然后通过对跌落试验台的实验研究完成模型的交叉检查。基于实验和理论耦合方法的振动被动最小化方法暴露。最后,提出了对不同控制系统的不同方法的比较分析和控制系统的实验结果。

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