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Analysis, design, and optimization of structures with integral compliant mechanisms for mid-frequency response

机译:具有整体顺应性机制的中频响应结构的分析,设计和优化

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摘要

A multi-scale aradigm is proposed that utilizes periodic, small-scale, integral compliant mechanisms within larger-scale structures for the attenuation of vibro-acoustic response. Amplification principles serve as the basis for the design of these mechanisms in achieving reduced energy transmission. The spectral finite element method is exploited for a force-velocity and energy flow analysis of the resultant truss-like structures. A genetic algorithm is employed to optimize structure size for greatest effectiveness in the frequency range of interest. This study demonstrates that a significant decrease in structural vibration is achievable and suggests promising applications including the design of acoustic isolation panels for broadband vehicle noise reduction. Copyright (c) 2007 John Wiley & Sons, Ltd.
机译:提出了一种多尺度的心律图,其利用较大结构中的周期性,小尺度,整体顺应性机制来衰减振动声响应。放大原理是设计这些机制以减少能量传递的基础。频谱有限元方法被用于对所产生的桁架状结构进行力速度和能量流分析。遗传算法用于优化结构尺寸,以在感兴趣的频率范围内发挥最大功效。这项研究表明,可以实现结构振动的显着降低,并提出了有希望的应用,包括用于降低宽带车辆噪声的隔音板的设计。版权所有(c)2007 John Wiley&Sons,Ltd.

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