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首页> 外文期刊>Journal of Sound and Vibration >Design optimization of a cellular-type noise insulation panel to improve transmission loss at low frequency
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Design optimization of a cellular-type noise insulation panel to improve transmission loss at low frequency

机译:蜂窝型噪声绝缘板的设计优化,以提高低频传输损耗

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摘要

In this paper, a systematic design method is proposed to improve the sound transmission loss of a cellular-type noise insulation panel, which is a thin rectangular plate with supporting frame. The unit cell of the noise insulation panel generates an anti-resonance effect at a certain frequency and yields a higher sound transmission loss than a flat plate of equivalent mass. Previous studies confirm that the mass ratio between the thin plate and the supporting frame has an important influence on the frequency at which the maximum sound transmission loss occurs. However, no design method to maximize the sound transmission loss at a target frequency has yet been reported, although this issue is very important for noise insulation of mechanical systems. In this regard, sizing optimization is performed using the thickness of the noise insulation panel as a design parameter. Hence, the optimal thickness distribution to maximize the sound transmission loss at a given target frequency is determined. To calculate the sound transmission loss, a finite element model of the noise insulation panel is constructed, considering the vibro-acoustic effect. Several numerical examples are presented to verify the proposed design method. The optimization results confirm that the designed unit cell exhibits high sound transmission loss at given frequencies of interest. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在本文中,提出了一种系统设计方法来改善蜂窝型噪声绝缘板的声音传输损耗,其是具有支撑框架的薄矩形板。噪声绝缘面板的单元电池以一定频率产生防谐振效果,并比等效质量的平板产生更高的声音传输损耗。以前的研究证实,薄板和支撑框架之间的质量比对发生最大声音传输损耗的频率具有重要影响。然而,尚未报告在目标频率下最大化声音传输损耗的设计方法,尽管该问题对于机械系统的噪声绝缘非常重要。在这方面,使用噪声绝缘板的厚度作为设计参数来执行尺寸优化。因此,确定最佳厚度分布以最大化给定目标频率的声音传输损耗。为了计算声音传输损耗,考虑振动声学效果,构造了噪声绝缘板的有限元模型。提出了几个数值例子以验证所提出的设计方法。优化结果证实,设计的单元电池在给定频率下表现出高声音传输损耗。 (c)2019 Elsevier Ltd.保留所有权利。

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