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Vibration analysis of a partially treated multi-layer beam with magnetorheological fluid

机译:磁流变液对部分处理的多层梁的振动分析

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Semi-active vibration control based on magnetorheological (MR) materials offers excellent potential for high bandwidth control through rapid variations in the rheological properties of the fluid under varying magnetic field. Such fluids may be conveniently applied to partial or more critical components of a large structure to realize more efficient and compact vibration control mechanism with variable damping. This study investigates the properties and vibration responses of a partially treated multi-layer MR fluid beam. The governing equations of a partially treated multi-layered MR beam are formulated using finite element method and Ritz formulation. The validity of the proposed finite element formulations is demonstrated by comparing the results with those obtained from the Ritz formulation and the experimental measurements. The properties of different configurations of a partially treated MR-fluid beam are evaluated to investigate the influences of the location and length of the MR-fluid for different boundary conditions. The properties in terms of natural frequencies and loss factors corresponding to various modes are evaluated under different magnetic field intensities and compared with those of the fully treated beams. The effect of location of the fluid treatment on deflection mode shapes is also investigated. The forced vibration responses of the various configurations of partially treated MR sandwich beam are also evaluated under harmonic force excitations. The results suggest that the natural frequencies and transverse displacement response of the partially treated MR beams are strongly influenced not only by the intensity of the applied magnetic field, but also by the location and the length of the fluid pocket. The application of partial treatment could also alter the deflection pattern of the beam, particularly the location of the peak deflection.
机译:基于磁流变(MR)材料的半主动振动控制通过在变化的磁场下迅速改变流体的流变特性,为高带宽控制提供了极好的潜力。这样的流体可以方便地施加到大型结构的部分或更关键的部件上,以实现具有可变阻尼的更有效和紧凑的振动控制机构。这项研究调查了部分处理的多层MR流体束的特性和振动响应。利用有限元法和Ritz公式建立了部分处理过的多层MR梁的控制方程。通过将结果与从Ritz公式获得的结果和实验测量结果进行比较,证明了所提出的有限元公式的有效性。评估了部分处理的MR流体束不同配置的特性,以研究MR流体的位置和长度对不同边界条件的影响。在不同的磁场强度下评估与各种模式相对应的固有频率和损耗因子的特性,并将其与经过充分处理的光束进行比较。还研究了流体处理位置对偏转模式形状的影​​响。在谐波力激励下,还评估了部分处理的MR夹层梁的各种配置的强制振动响应。结果表明,部分处理的MR束的固有频率和横向位移响应不仅受施加的磁场强度的强烈影响,而且受流体囊的位置和长度的强烈影响。局部处理的应用也可能会改变光束的偏转模式,尤其是峰值偏转的位置。

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