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Magnetostatic Simulation in a Novel Magnetorheological Elastomer Based Loudspeaker Surround

机译:基于扬声器的新型磁流变弹性体的静磁仿真

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This article delivers the application of magnetorheological elastomers (MREs) as a variable stiffness of surround in a loudspeaker. Firstly, the existing surround was replaced by a set of variable stiffness absorber featuring an MREs. In the preliminary stage, the magnetic circuit absorber was evaluated through simulation work. Then, the simulation using the finite element method magnetic (FEMM) was conducted to predict the performance of MREs. The applied currents were varied from 0 to 1.5 A with an interval of 0.25 A. Later, the average magnetic flux density obtained from the simulation was used for estimating shear storage modulus and shear loss modulus which taken from actual experimental data. The stiffness obtained by processing shear storage modulus and shear loss modulus with an analytical calculation method. Therefore, the performance of MREs could be evaluated. The suspension system MREs which have investigated have good performance, i.e., has a wide range of stiffness.
机译:本文介绍了磁流变弹性体(MRE)的应用,作为扬声器中环绕声的可变刚度。首先,现有的环绕声被一组具有MRE的可变刚度吸收器所取代。在初步阶段,通过仿真工作对磁路吸收器进行了评估。然后,使用电磁有限元法(FEMM)进行了仿真,以预测MRE的性能。施加的电流在0至1.5 A之间以0.25 A的间隔变化。随后,从模拟中获得的平均磁通密度用于估算从实际实验数据中得出的剪切储能模量和剪切损耗模量。通过使用解析计算方法处理剪切储能模量和剪切损耗模量获得的刚度。因此,可以评估MRE的性能。已研究的悬架系统MRE具有良好的性能,即具有宽广的刚度范围。

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