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Vibration damping of honeycomb sandwich panels induced by micro-perforations

机译:微穿孔诱导蜂窝夹层面板的振动阻尼

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Sandwich honeycomb panels are widely used in aerospace applications because they are very light and stiff. Strong mechanical or acoustical excitations, associated to low damping properties of such panels can lead to high vibration levels, generating fatigue and reliability problems. We propose in this paper to investigate the capability of micro-perforations of honeycomb panels for reducing their vibration levels. Micro-perforations are mostly known and used in acoustics for increasing absorption. A model of the panel vibration damping induced by the acoustic motion in the micro-perforations is proposed here. For this purpose, a lumped element model, based on Maa's results is developped for estimating a viscous damping force at the micro-scale. The resultant force is then homogenized for a group of cells (meso-scale model) and allows us to express a damping term for the global structure (macro-scale model). A perturbation technique is then used to compute the modal damping coefficients of a micro-perforated plate in order to evaluate the performance of the treatment.
机译:夹层蜂窝面板广泛用于航空航天应用,因为它们非常轻盈,僵硬。与这种面板的低阻尼性能相关的强机械或声学激发可导致高振动水平,产生疲劳和可靠性问题。我们提出了本文探讨蜂窝面板微穿孔能力降低振动水平的能力。微穿孔主要是已知的并且用于声学,用于增加吸收。这里提出了由微穿孔中的声学运动引起的面板振动阻尼模型。为此目的,基于MAA的结果的集总元件模型被显影,以估计微尺寸的粘性阻尼力。然后将得到的力归化为一组细胞(Meso-Scale模型),并允许我们表达全局结构的阻尼术语(宏观模型)。然后使用扰动技术来计算微穿孔板的模态阻尼系数,以评估治疗的性能。

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