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Design optimization and performance comparison of three styles of one-dimensional acoustic black hole vibration absorbers

机译:三维声黑洞减振器三种风格的设计优化和性能比较

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摘要

Structures whose thickness is tapered according to a power law exhibit the 'acoustic black hole' (ABH) effect, which can be leveraged for effective vibration reduction without a net increase in weight. However, classic ABH theory is not explicit about the precise topology of the taper, which may have significant practical effects in structures containing ABHs. In this paper, three styles of one-dimensional ABH vibration absorbers are examined, referred to herein as 'standard symmetric', 'standard nonsymmetric', and 'double-leaf'. Each style of ABH is embedded in a beam and a multi-objective approach is used to identify the set of ABH designs that optimally minimize the beam's vibration response and its overall mass. Comparison of the results show that each style of ABH has a similar trade-off between the two objectives, but that the choice of style - particularly as regards the application of added damping can have significant effects on overall performance. (C) 2019 Elsevier Ltd. All rights reserved.
机译:根据电力法逐渐逐渐变细的结构表现出“声学黑洞”(ABH)效应,其可以利用,无需净重的净减振而没有净减振。然而,经典ABH理论不明确锥度的精确拓扑,这可能在含有ABHS的结构中具有显着的实际效果。在本文中,检查了三维ABH减振器的三种风格,在此称为“标准对称”,“标准非对称”和“双叶”。 ABH的每种风格都嵌入光束中,使用多目标方法来识别该组ABH设计,以最佳地最小化光束的振动响应及其整体质量。结果表明,两种目标之间的每种风格都有类似的权衡,但风格的选择 - 特别是在施加增加的阻尼的应用可能对整体性能产生显着影响。 (c)2019 Elsevier Ltd.保留所有权利。

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