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Sound Transmission Loss of a Sandwich Plate with Adjustable Core Layer Thickness

机译:具有可调节芯层厚度的夹层板的声音传输损耗

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摘要

Compressible Constrained Layer Damping (CCLD) is a novel, semi-active, lightweight-compatible solution for vibration mitigation based on the well-known constrained layer damping principle. The sandwich-like CCLD set-up consists of a base structure, a constraining plate, and a compressible open-cell foam core in between, enabling the adjustment of the structure’s vibration behaviour by changing the core compression using different actuation pressures. The aim of the contribution is to show to what degree, and in which frequency range the acoustic behaviour can be tuned using CCLD. Therefore, the sound transmission loss (TL), as an important vibro-acoustic index, is determined in an acoustic window test stand at different actuation pressures covering a frequency range from 0.5 to 5 kHz. The different actuation pressures applied cause a variation of the core layer thickness (from 0.9 d0 to 0.3 d0), but the resulting changes of the stiffness and damping of the overall structure have no significant influence on the TL up to approximately 1 kHz for the analysed CCLD design. Between 1 kHz and 5 kHz, however, the TL can be influenced considerably well by the actuation pressure applied, due to a damping-dominated behaviour around the critical frequency.
机译:可压缩约束层阻尼(CCLD)是一种基于众所周知的约束层阻尼原理的振动缓解的新型,半主动,轻量级兼容的解决方案。夹心状CCLD设置包括基础结构,约束板和介于之间的可压缩开孔泡沫芯,通过使用不同的致动压力改变芯压缩来实现结构的振动行为。贡献的目的是在多大程度上展示,并且其中可以使用CCLD调整声学行为的频率范围。因此,声音传输损耗(TL)作为重要的振动声索引,在声学窗口测试台中确定,在不同的致动压力下,覆盖0.5至5kHz的频率范围。施加的不同致动压力会导致芯层厚度(0.9d0至0.3d0)的变化,但是整个结构的刚度和阻尼的变化对分析的分析没有显着影响到大约1kHz。 CCLD设计。然而,由于临界频率周围的阻尼主导行为,在1 kHz和5kHz之间,T1可以通过施加的致动压力来影响。

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