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Acoustic measurements on monolithic aerogel samples and application of the selected solutions to standard window systems

机译:整体气凝胶样品的声学测量以及所选解决方案在标准窗户系统中的应用

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Silica aerogels are thermally and acoustically insulating and can offer advantages in building thermal applications. They come in granular (multiple small pieces) and monolithic (single piece) form. Granular aerogels are relatively easy to produce and can be incorporated into large window systems. Large monolithic aerogels are more difficult to produce, but they offer superior optical and thermal performance. The aim of this paper is to experimentally investigate the acoustic properties of monolithic aerogel samples fabricated using a rapid supercritical extraction method. The acoustic absorption coefficient (α) and the transmission loss (TL) were measured at normal incidence in a traditional impedance tube in the 100–5000 Hz frequency range, for three thicknesses, from 12.7 to 25.4 mm. Good acoustic performance was achieved: 12.7-mm-thick cylindrical monoliths have a peak acoustic absorption coefficient of 0.88 at ∼1500 Hz. When the thickness increases, α decreases (to 0.78 and 0.54 for 19-mm and 25.4-mm thick samples, respectively), with peaks at lower frequencies (1300 and 1100 Hz). The transmission loss increases with aerogel thickness with values as high as 10–15 dB in the 100- to 1600-Hz range. When compared to granular aerogels, the monoliths have TLs that are 5–7 dB larger in the 100- to 1600-Hz range. To further compare performance, small glazing packages were fabricated from glass panels with air, granular, or monolithic aerogel in the interspace. The TL was evaluated and found to be in the 35- to 45-dB range for all samples. The monolithic aerogel glazing had the highest TL, particularly in the 200- to 1000-Hz range. Based on these results, we estimated a 3-dB increase in the sound insulation index for the glazing system with a monolith when compared to the glazing system with air, and a 1- to 2-dB increase when compared to the granular aerogel glazing. This study demonstrates that the use of transparent monolithic silica aerogel in the interspace of conventional glazing systems would result in significant improvement in noise insulation.
机译:二氧化硅气凝胶是隔热和隔音的,可在建筑热学应用中提供优势。它们以粒状(多个小块)和整体式(单块)形式出现。粒状气凝胶相对容易生产,可以掺入大窗户系统中。大型整体式气凝胶更难生产,但它们具有出色的光学和热性能。本文的目的是实验研究使用快速超临界萃取方法制备的整体气凝胶样品的声学特性。在传统的阻抗管中,在100-5000 Hz频率范围内的垂直入射下,以12.7至25.4 thicknessmm的三种厚度测量了吸声系数(α)和传输损耗(TL)。达到了良好的声学性能:12.7毫米厚的圆柱形整料在〜1500 Hz处的峰值吸声系数为0.88。当厚度增加时,α减小(对于19毫米和25.4毫米厚的样品,分别减小至0.78和0.54),并在较低频率(1300和1100 Hz)处出现峰值。传输损耗随气凝胶厚度的增加而增加,在100至1600 Hz范围内,其值高达10–15 dB。与颗粒状气凝胶相比,整料的TL在100至1600 Hz范围内的TL大5-7dB。为了进一步比较性能,小型玻璃包装是由玻璃面板制成的,中间有空气,颗粒状或整体式气凝胶。对TL进行评估,发现所有样品的TL在35至45dB范围内。整体式气凝胶玻璃具有最高的TL,特别是在200至1000 Hz的范围内。基于这些结果,我们估计,与带有空气的玻璃窗系统相比,带有整体式玻璃窗系统的隔音系数提高了3dB,与颗粒状气凝胶玻璃窗相比提高了1至2dB。这项研究表明,在常规玻璃系统的间隙中使用透明的整体式二氧化硅气凝胶将显着改善隔音效果。

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