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Active control of beam with magnetostrictive layer

机译:具有磁致伸缩层的梁的主动控制

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摘要

The paper analyses the damping characteristics obtained using a distributed magnetostrictive layer bonded to an aluminum beam for different boundary conditions and coil configurations. The magnetostrictive layer produces the actuating force required to control the vibration in the beam, based on a negative velocity feedback control law. The control input is the current to the solenoid surrounding the beam. Prior formulations in the literature have assumed that the current through the coil is a function of axial distance. Even though this assumption is mathematically valid, a physical consideration of the problem limits such an assumption. In the present study, perhaps for the first time, a finite element formulation, physically consistent with the problem has been developed. Vibration reduction in the beam, by positioning the magnetostrictive layer and its current carrying actuating coil pair along the beam is investigated. Issues associated with control for different boundary condition are highlighted.
机译:本文分析了在不同的边界条件和线圈配置下,使用分布在铝梁上的分布式磁致伸缩层获得的阻尼特性。磁致伸缩层根据负速度反馈控制律,产生控制束中振动所需的驱动力。控制输入​​是流到光束周围螺线管的电流。文献中的现有公式已经假定流过线圈的电流是轴向距离的函数。即使该假设在数学上是有效的,对问题的物理考虑也限制了这种假设。在本研究中,也许是第一次,开发了与该问题在物理上一致的有限元公式。通过将磁致伸缩层及其载流的致动线圈对沿着电子束放置,研究了电子束的减振。突出显示了与针对不同边界条件的控制相关的问题。

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