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Stochastic microvibration response analysis of a magnetorheological viscoelastomer based sandwich beam under localized magnetic fields

机译:磁流变粘弹性体夹层梁在局部磁场作用下的随机微振动响应分析

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摘要

The microvibration of a horizontal magnetorheological viscoelastomer (MRVE) based sandwich beam with supported mass under random disturbances and localized magnetic fields is studied to verify its control effectiveness. The localized magnetic field covering incompletely the beam results in the MRVE properties varying in space. The effects of the localized magnetic field distribution on the microvibration are considered in the analysis. The vibration equations with spatial parametric variation and temporal randomness of the beam system under the localized magnetic field are derived, and solved by the modal transformation and frequency spectrum analysis. Then the expression of the root-mean-square velocity criterion for microvibration is given, where the non-homogeneous MRVE modulus is considered due to the localized magnetic field. The proposed analysis method can be extended to other random excited composite structures with viscoelastic cores. The stochastic microvibration control effectiveness of the beam system and the effects of the localized magnetic field intensity and placement on the microvibration response are verified by numerical results.
机译:研究了水平磁流变粘弹性体(MRVE)夹心梁在随机扰动和局部磁场作用下的微振动,以验证其控制效果。不完全覆盖光束的局部磁场导致MRVE特性在空间中变化。分析中考虑了局部磁场分布对微振动的影响。推导了局部磁场作用下梁系统空间参数变化和时间随机性的振动方程,并通过模态变换和频谱分析求解。然后给出了微振动的均方根速度准则的表达式,其中由于局部磁场而考虑了非均匀的MRVE模量。所提出的分析方法可以扩展到其他具有粘弹性芯子的随机激发复合结构。数值结果验证了梁系统的随机微振动控制效果以及局部磁场强度和位置对微振动响应的影响。

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