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首页> 外文期刊>Journal of intelligent material systems and structures >Nonlinear vibration analysis of circular/annular/sector sandwich panels incorporating magnetorheological fluid operating in the post-yield region
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Nonlinear vibration analysis of circular/annular/sector sandwich panels incorporating magnetorheological fluid operating in the post-yield region

机译:循环/环形/扇形夹层板的非线性振动分析,其在产量后区域运行磁流变液

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摘要

This study offers a comprehensive analysis on the nonlinear vibratory behavior of circular, annular, and sector sandwich panels containing magnetorheological (MR) fluid as the core layer. Due to the large deformation experienced by the sandwich structures, the MR fluid operates in the post-yield region, in which the shear strain and shear stress are nonlinearly dependent. The post-yield characteristics of the MR fluid are quantified using the experimental results available in the literature. The present study also employs the experimental results presented in the literature on the dynamic characteristics of a MR based sandwich circular plate to demonstrate accuracy of the results. To identify governing equations of motion of the structures, a finite element approach based on von Karman formulations is employed. Moreover, displacement control strategy is used to solve the extracted nonlinear equations and evaluate dynamic characteristics of the MR based circular/annular/sector sandwich plates in terms of resonant frequencies and loss factors. This study highlights the effect of post-yield behavior of the MR fluid in the nonlinear vibration attenuation of MR sandwich structures, under different levels of magnetic field. Also, the effects of maximum deformation and magnetic field on the functionality of the MR fluid are comprehensively investigated.
机译:本研究提供了含有磁流变学(MR)流体作为芯层的圆形,环形和扇形夹层面板的非线性振动行为的综合分析。由于夹层结构所经历的大变形,MR流体在后产率区域中操作,其中剪切应变和剪切应力是非线性的。使用文献中可获得的实验结果量化MR流体的后产率特征。本研究还采用在文献中呈现的实验结果对基于MR基夹心圆形板的动态特性,以证明结果的准确性。为了识别结构的运动方程,采用了基于von Karman制剂的有限元方法。此外,位移控制策略用于解决提取的非线性方程,并在谐振频率和损耗因子方面评价MR基圆形/环形/扇形夹层板的动态特性。该研究突出了MR流体后产率行为在不同水平的磁场下的夹层结构中的非线性振动衰减中的效果。而且,全面研究了最大变形和磁场对MR流体的功能的影响。

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