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Micro-vibration suppression of equipment supported on a floor incorporating magneto-rheological elastomer core

机译:抑制装有磁流变弹性体芯的地板上的设备的微振动

摘要

In this study, magneto-rheological elastomers (MREs) are adopted to construct a smart sandwich beam for micro-vibration control of equipment. The micro-vibration response of a smart sandwich beam with MRE core which supports mass-concentrated equipment under stochastic support-motion excitations is investigated to evaluate the vibration suppression capability. The dynamic behavior of MREs as a smart viscoelastic material is characterized by a complex modulus dependent on vibration frequency and controllable by external magnetic fields. A frequency-domain solution method for the stochastic micro-vibration response of the smart sandwich beam supporting mass-concentrated equipment is developed based on the Galerkin method and random vibration theory. First, the displacements of the beam are expanded as series of spatial harmonic functions and the Galerkin method is applied to convert the partial differential equations of motion into ordinary differential equations. With these equations, the frequency-response function matrix of the beammass system and the expression of the velocity response spectrum are then obtained, with which the root-mean-square (rms) velocity response in terms of the one-third octave frequency band can be calculated. Finally, the optimization problem of the complex modulus of the MRE core is defined by minimizing the velocity response spectrum and the rms velocity response of the sandwich beam, through altering the applied magnetic fields. Numerical results are given to illustrate the influence of MRE parameters on the rms velocity response and the response reduction capacity of the smart sandwich beam. The proposed method is also applicable to response analysis of a sandwich beam with arbitrary core characterized by a complex shear modulus and subject to arbitrary stochastic excitations described by a power spectral density function, and is valid for a wide frequency range.
机译:在这项研究中,采用磁流变弹性体(MRE)来构建用于设备微振动控制的智能夹层梁。研究了带有MRE芯的智能夹层梁在随机支撑运动激励下的微振动响应,该磁心支撑质量集中的设备,以评估其抑振能力。作为智能粘弹性材料的MRE的动态行为的特征在于取决于振动频率且可由外部磁场控制的复数模量。基于Galerkin方法和随机振动理论,提出了一种智能三明治夹层梁集中质量集中设备随机微振动响应的频域求解方法。首先,将梁的位移扩展为一系列空间谐波函数,然后应用Galerkin方法将运动的偏微分方程转换为常微分方程。利用这些方程式,获得了波束质量系统的频率响应函数矩阵和速度响应谱的表达式,利用该方程,可以以三分之一倍频程频带为单位的均方根(rms)速度响应。被计算。最后,通过改变所施加的磁场,通过最小化夹心梁的速度响应谱和均方根速度响应,定义了MRE磁芯的复数模量的优化问题。数值结果表明了MRE参数对均方根速度响应和智能夹层梁响应减小能力的影响。所提出的方法还适用于具有任意芯的夹心梁的响应分析,该夹心梁具有复杂的剪切模量,并且受到功率谱密度函数描述的任意随机激励的影响,并且适用于宽频率范围。

著录项

  • 作者

    Ni YQ; Ying ZG; Chen ZH;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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