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Structural optimization of tapered composite sandwich plates partially treated with magnetorheological elastomers

机译:磁流变弹性体部分处理的锥形复合夹芯板的结构优化

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摘要

This study investigates the optimal locations of magnetorheological elastomer (MRE) segments in partially treated tapered composite MRE sandwich plates to maximize the natural frequencies and the loss factors. Various partially treated tapered composite MRE sandwich plate configurations are developed by dropping-off the plies longitudinally in top and bottom orthotropic (composite) layers with uniform core layer thickness. The core layer is made of natural rubber and MRE. The classical laminated plate theory is used to derive the governing differential equations of motion of the various partially treated MRE tapered composite sandwich plate configurations. The equations of motion are solved by using finite element formulation. Various cases of optimization problems are formulated and solved using genetic algorithm (GA) in order to obtain optimal locations to yield maximum natural frequencies and loss factors corresponding to the first five modes. The proposed methodology is validated by comparing the results evaluated in identifying optimal locations of MR fluid pockets filled in between uniform composite face layers, available in literature. It is observed that according to the user/ designer requirements on achieving the optimal functions and their maximum value, the optimal locations of MRE pockets vary. It has also been demonstrated that the end conditions of the sandwich plate could play an important role in identifying the optimal locations of the MRE pockets. Further, it is observed that the optimal locations of MRE pockets are influenced by the ply drop off and resin locations. Hence it is concluded that the efficient design layout of a partially treated tapered composite MRE sandwich plate configurations would provide the guidelines for the designer to control the vibration effectively.
机译:这项研究调查了磁流变弹性体(MRE)段在部分处理的锥形复合MRE夹心板中的最佳位置,以最大程度地提高固有频率和损耗因子。通过在具有均匀芯层厚度的正交各向异性(复合)层的顶部和底部纵向放下帘布层,可以开发出各种经过部分处理的锥形复合材料MRE夹心板配置。芯层由天然橡胶和MRE制成。经典层压板理论用于推导各种经过部分处理的MRE锥形复合夹层板配置的运动控制微分方程。通过使用有限元公式来求解运动方程。使用遗传算法(GA)制定并解决了各种优化问题的案例,以便获得最佳位置,以产生对应于前五个模式的最大固有频率和损耗因子。通过比较评估在鉴定均匀复合表面层之间填充的MR流体腔的最佳位置时评估的结果,可以验证所提出的方法,这在文献中是可用的。可以看出,根据用户/设计人员对实现最佳功能及其最大值的要求,MRE袋的最佳位置会有所不同。还已经证明,夹层板的最终条件可能在确定MRE袋的最佳位置时起重要作用。此外,观察到,MRE袋的最佳位置受帘布层脱落和树脂位置的影响。因此可以得出结论,部分处理的锥形复合材料MRE夹心板配置的有效设计布局将为设计人员有效控制振动提供指导。

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