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Novel method of sound barrier measurement of porous and nonporous materials

机译:多孔和无孔材料的声屏障测量新方法

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摘要

Noise is an unwanted sound which creates the pollution and adverse effects on individual. One of the simple ways to reduce the noise is to place the acoustic material in the path between the source and the receiver so that sound waves get either absorbed or blocked while reaching towards the receiver. There are various techniques available to measure sound absorption or sound barrier (blocking) caused by the acoustic material. However these techniques are also associated with certain limitations. Our objective was to design and fabricate simple technique to measure sound barrier which overcomes these limitations and allows larger sample size and random scatter of sound wave to accurately predict actual field measurements. A sound source (i.e. a speaker) and a microphone, placed in different pipes separated by sample in between, were used for the measurement of sound barrier property of porous materials (nonwovens, woven fabric, and foam), nonporous materials (rubber, cardboard) and their composite structures at four different frequencies 250 Hz, 500 Hz, 1,000 Hz, and 2000 Hz. Different set of readings were taken in absence and presence of the sample by measuring the transmitted sound across the sample.
机译:噪音是有害的声音,会对个人造成污染和不利影响。降低噪声的简单方法之一是将声学材料放置在源和接收器之间的路径中,以使声波在到达接收器时被吸收或阻挡。有多种技术可用于测量由声学材料引起的吸声或隔音(阻挡)。但是,这些技术还具有某些局限性。我们的目标是设计和制造一种简单的技术来测量声屏障,该技术克服了这些限制,并允许更大的样本量和随机的声波散射来准确预测实际的现场测量结果。声源(即扬声器)和麦克风分别放置在不同的管道中,管道之间被样品隔开,用于测量多孔材料(无纺布,机织织物和泡沫),无孔材料(橡胶,硬纸板)的隔音性能)及其复合结构在四个不同的频率250 Hz,500 Hz,1,000 Hz和2000 Hz。通过测量样品中传输的声音,可以在不存在和存在样品的情况下获取不同的读数。

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