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首页> 外文期刊>Journal of Sound and Vibration >Vibration isolation design for periodically stiffened shells by the wave finite element method
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Vibration isolation design for periodically stiffened shells by the wave finite element method

机译:波有限元法定期加强壳体的隔振设计

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摘要

Periodically stiffened shell structures are widely used due to their excellent specific strength, in particular for aeronautical and astronautical components. This paper presents an improved Wave Finite Element Method (FEM) that can be employed to predict the band-gap characteristics of stiffened shell structures efficiently. An aero-engine casing, which is a typical periodically stiffened shell structure, was employed to verify the validation and efficiency of the Wave FEM. Good agreement has been found between the Wave FEM and the classical FEM for different boundary conditions. One effective wave selection method based on the Wave FEM has thus been put forward to filter the radial modes of a shell structure. Furthermore, an optimisation strategy by the combination of the Wave FEM and genetic algorithm was presented for periodically stiffened shell structures. The optimal out-of-plane band gap and the mass of the whole structure can be achieved by the optimisation strategy under an aerodynamic load. Results also indicate that geometric parameters of stiffeners can be properly selected that the out-of-plane vibration attenuates significantly in the frequency band of interest. This study can provide valuable references for designing the band gaps of vibration isolation. (c) 2017 Elsevier Ltd. All rights reserved.
机译:由于其优异的特定强度,特别是用于航空和宇航组分,周期性地使用周期性加强的壳结构。本文提出了一种改进的波有限元方法(FEM),其可用于预测加强壳结构的带隙特性。采用典型周期性加强壳结构的航空发动机壳体,以验证波FEM的验证和效率。在Wave FEM和典型的FEM之间发现了良好的一致性,用于不同的边界条件。已经提出了一种基于波形有限元学的一种有效波选择方法以滤除壳结构的径向模式。此外,提出了通过波FEM和遗传算法组合的优化策略用于定期加强的壳结构。通过在空气动力学载荷下的优化策略可以实现最佳平面间隙和整个结构的质量。结果还表明可以正确选择加强件的几何参数,使平面外振动在感兴趣的频带中显着衰减。本研究可以为设计振动隔离的带隙提供有价值的参考。 (c)2017 Elsevier Ltd.保留所有权利。

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