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Sound insulation properties of sandwich structures on glass fiber felts

机译:玻璃纤维毡上的三明治结构的隔音性能

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摘要

This paper focuses on three types of glass fiber felt sandwich structures to identify the optimal sound insulation structure. Air flow resistivities of glass fiber felts are 6633 Pa center dot s/m(2) (Loose), 19579 Pa center dot s/m(2) (Mid) and 42724 Pa center dot s/m(2) (Dense), respectively. The three types of sandwich structures are dense-mid-loose (DML), mid-loose-dense (MLD) and loose-dense-mid (LDM), respectively. Sound transmission loss is determined by an impedance tube method and the structure morphology is examined by the optical microscope. The results show that sound insulation property is affected by both the sound incident direction and composite structure. The optimal sandwich structure is MLD with the incident surface being M. The composite structures with the best and worst sound insulation are compared at the frequencies of 630 Hz, 1000 Hz, 2000 Hz and 3000 Hz. The growth rates of sound insulation are 7.4 %, 19.0 %, 15.4 % and 10.5 %, respectively. The sound transmission is also calculated by a simple numerical model which agrees with the experimental results well.
机译:本文重点介绍三种类型的玻璃纤维毡夹层结构,以确定最佳的隔音结构。玻璃纤维毡的气流阻力为6633 Pa中心点s / m(2)(松散),19579 Pa中心点s / m(2)(中)和42724 Pa中心点s / m(2)(密实),分别。夹心结构的三种类型分别为密中松(DML),中松密(MLD)和松密中(LDM)。通过阻抗管法确定声传输损耗,并通过光学显微镜检查结构形态。结果表明,隔音性能受声入射方向和复合结构的影响。最佳夹层结构是MLD,入射面为M。在630 Hz,1000 Hz,2000 Hz和3000 Hz的频率下比较了隔音效果最佳和最差的复合结构。隔音材料的增长率分别为7.4%,19.0%,15.4%和10.5%。通过简单的数值模型也可以计算出声音的传播,该数值模型与实验结果吻合得很好。

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