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Multi-frequency excitation of magnetorheological elastomer-based sandwich beam with conductive skins

机译:具有导电蒙皮的磁流变弹性体基夹层梁的多频激励

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摘要

The present work deals with the dynamic stability of a symmetric sandwich beam with magnetorheological elastomer (MRE) embedded viscoelastic core and conductive skins subjected to time varying axial force and magnetic field. The conductive skins induce magnetic loads and moments under the application of magnetic field during vibration. The MRE part works in shear mode and hence the dynamic properties of the sandwich beam can be controlled by magnetic fields due to the field dependent shear modulus of MRE material. Considering the core to be incompressible in transverse direction, classical sandwich beam theory has been used along with extended Hamilton's principle and Calarkin's method to derive the governing equation of motion. The resulting equation reduces to that of a multi-frequency parametrically excited system. Second order method of multiple scales has been used to study the stability of the system for simply supported and clamped free sandwich beams. Here the experimentally obtained properties of magnetorheological elastomers based on natural rubber have been considered in the numerical simulation. The results suggest that the stability of the MRE embedded sandwich beam can be improved by using magnetic field.
机译:目前的工作涉及对称的夹层梁的动态稳定性,该层夹有磁流变弹性体(MRE)嵌入的粘弹性芯和导电表皮,它们会随时间变化的轴向力和磁场而变化。在振动过程中,在磁场作用下,导电蒙皮会感应出磁性负载和力矩。 MRE部件以剪切模式工作,因此由于MRE材料的场相关剪切模量,三明治磁场的动态特性可以通过磁场控制。考虑到芯在横向方向上是不可压缩的,经典的夹层梁理论已与扩展的汉密尔顿原理和卡拉克金方法一起用于推导运动控制方程。所得方程式简化为多频参量激励系统的方程式。多尺度的二阶方法已用于研究简单支撑和夹紧的自由夹心梁系统的稳定性。在数值模拟中已经考虑了基于实验获得的基于天然橡胶的磁流变弹性体的性能。结果表明,利用磁场可以改善MRE嵌入式夹层梁的稳定性。

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