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The simulation of magnetorheological elastomers adaptive tuned dynamic vibration absorber for automobile engine vibration control

机译:磁流变弹性体自适应调谐动态减振器在汽车发动机振动控制中的仿真。

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摘要

The aim of this article is to investigate the use of a Dynamic Vibration Absorber to control vibration of engine by using simulation. Traditional means of vibration control have involved the use of passive and more recently, active methods. This study is different in that it involves an adaptive component in the design of vibration absorber using magnetorheological elastomers (MREs) as the adaptive spring.MREs are kind of novel smart material whose shear modulus can be controlled by applied magnetic field. In this paper, the vibration mode of a simple model of automobile engine is simulated by Finite Element Method (FEM) analysis. Based on the analysis, the MREs Adaptive Tuned Dynamic Vibration Absorber (ATDVA) is presented to reduce the vibration of the engine. Simulation result indicate that the control frequency of ATDVA can be changed by modifing the shear modulus of MREs and the vibraion reduction efficiency of ATDVA are also evaluated by FEM analysis.
机译:本文的目的是研究使用动态减振器通过仿真来控制发动机的振动。传统的振动控制方法涉及被动和近来主动方法的使用。这项研究的不同之处在于,在磁流变弹性体(MRE)作为自适应弹簧的减振器设计中涉及自适应组件.MRE是一种新型的智能材料,其剪切模量可以通过施加磁场来控制。本文通过有限元方法(FEM)分析了汽车发动机简单模型的振动模式。在分析的基础上,提出了MRE自适应调谐动态减振器(ATDVA),以减少发动机的振动。仿真结果表明,通过改变MRE的剪切模量可以改变ATDVA的控制频率,并通过有限元分析来评估ATDVA的减振效率。

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