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Free vibration analysis of magneto-rheological smart annular three-layered plates subjected to magnetic field in viscoelastic medium

机译:粘弹性介质中磁场磁流变智能环形三层板的自由振动分析

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Magneto-rheological fluids and magneto-strictive materials are of the well-known smart materials which are used to control and reduce the vibrations of the structures. Vibration analysis of a smart annular three-layered plate is provided in this work. MR fluids are used as the core's material type and the face sheets are made from MS materials and is assumed they are fully bonded to each other. The structure is rested on visco-Pasternak foundation and also is subjected to a transverse magnetic field. The governing motion equations are derived based on CPT and employing Hamilton's principle and are solved via GDQ as a numerical method for various boundary conditions. Effect of different parameters on the results are considered and discussed in detail. One of the salient features of this work is the consideration of MR fluids as the core, MS materials as the faces, and all of them under magnetic field. The outcomes of this study may be led to design and create smart structures such as sensors, actuators and also dampers.
机译:磁力流变液和磁力狭窄材料是众所周知的智能材料,用于控制和减少结构的振动。在这项工作中提供了智能环形三层板的振动分析。 MR流体用作芯的材料类型,并且面部片材由MS材料制成,并且假设它们彼此完全粘合。该结构搁置在Visco-pasternak基础上,并且还经受横向磁场。基于CPT导出控制运动方程,并采用汉密尔顿原理,并通过GDQ作为各种边界条件的数值方法解决。不同参数对结果的影响被考虑并详细讨论。该工作的突出特征之一是考虑MR流体作为芯,MS材料作为面部,以及在磁场下的所有它们。该研究的结果可能导致设计和创造智能结构,例如传感器,执行器和阻尼器。

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