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Controlling tube vibration using an electro-rheological fluid

机译:使用电流变液控制管振动

摘要

The vibration transmissibility characteristics of a cantilevered brass tube are controlled by means of an electro-rheological (ER) fluid which is employed as a constrained layer damping medium. The ER fluid, which is a 50 wt.% mixture of silicone oil and starch, was contained in the annular space formed between the outer surface of the tube and the inner surface of a bigger brass tube. It is shown that the modal characteristics of the tube depend on the electric field strength and on the height of the ER fluid. The modal frequencies of the tube increase as the electric field strength is increased and as the height of the ER fluid is increased. Also, the loss factors generally increase as the electric field is increased, but decrease as the height of ER fluid in the annular space is increased. When the annular space is 100% filled with ER fluid, the fluid effectively couples the inner and outer tubes into one vibrating system. Overall, the modal transmissibility of the tube is least when the annular space is filled with the ER fluid to a level of 12.5% of the maximum and an electric field strength of 1 kV/mm is applied.
机译:悬臂式黄铜管的振动传递特性是通过电流变(ER)流体控制的,该流体用作约束层阻尼介质。 ER流体是硅油和淀粉的50 wt。%的混合物,被包含在在管的外表面和更大的黄铜管的内表面之间形成的环形空间中。结果表明,管的模态特性取决于电场强度和ER流体的高度。管的模态频率随着电场强度的增加和ER流体高度的增加而增加。而且,损耗因子通常随着电场的增加而增加,但是随着环形空间中的ER流体的高度增加而减小。当环形空间100%充满ER流体时,该流体将内管和外管有效地耦合到一个振动系统中。总体而言,当环形空间中充满ER流体至最大值的12.5%且施加1 kV / mm的电场强度时,管的模态透射率最小。

著录项

  • 作者

    Oyadiji S. O.;

  • 作者单位
  • 年度 2003
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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