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Multidisciplinary Design Optimization of a Novel Sandwich Beam-Based Adaptive Tuned Vibration Absorber Featuring Magnetorheological Elastomer

机译:新型基于磁流变弹性体的基于三明治梁的自适应调谐减振器的多学科设计优化

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摘要

The present study aims to investigate the dynamic performance and design optimization of a novel magnetorheological elastomer based adaptive tuned vibration absorber (MRE-ATVA). The proposed MRE-ATVA consists of a light-weight sandwich beam treated with an MRE core layer and two electromagnets installed at both free ends. Three different design configurations for electromagnets are proposed. The finite element (FE) model of the proposed MRE-ATVA and magnetic model of the electromagnets are developed and combined to evaluate the frequency range of the absorber under varying magnetic field intensity. The results of the developed model are validated in multiple stages with available analytical and simulation data. A multidisciplinary design optimization strategy has been formulated to maximize the frequency range of the proposed MRE-based ATVA while respecting constraints of weight, size, mechanical stress, and sandwich beam deflection. The optimal solution is obtained and compared for the three proposed ATVA configurations. The optimal ATVA with a U-shaped electromagnet shows more than 40% increase in the natural frequency while having a total mass of 596 g.
机译:本研究旨在研究一种新型的基于磁流变弹性体的自适应调谐减振器(MRE-ATVA)的动态性能和设计优化。拟议的MRE-ATVA由轻质夹层梁组成,该夹层梁经过MRE核心层处理,两个自由端均安装有两个电磁体。提出了三种不同的电磁体设计配置。开发并结合了拟议的MRE-ATVA的有限元(FE)模型和电磁体的磁性模型,以评估在变化的磁场强度下吸收体的频率范围。使用可用的分析和模拟数据,可以在多个阶段中验证开发模型的结果。已制定了多学科设计优化策略,以在考虑重量,尺寸,机械应力和夹层梁挠度的约束的同时,使所提出的基于MRE的ATVA的频率范围最大化。对于三种建议的ATVA配置,获得并比较了最佳解决方案。具有U形电磁铁的最佳ATVA的总质量为596 g,其固有频率增加了40%以上。

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