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Effect of Granule Sizes on Acoustic Properties of Protein-Based Silica Aerogel Composites via Novel Inferential Transmission Loss Method

机译:新型推断传输损耗法研究颗粒尺寸对蛋白质基二氧化硅气凝胶复合材料声学性能的影响

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The acoustic properties of the silica aerogel (SA) granules of various sizes from 0.50 to 3.35 mm, distributed into six groups of nominal sizes and measured via a two-microphone impedance tube, are presented. The absorption coefficients of the SA granules were evaluated at ultra- to super-low frequency range from 50–1600 Hz. It was observed that nominal SA granules with sizes of 1.2 mm (AG2) and 1.7 mm (AG3) displayed the best absorption coefficients. When tested with granules filled at 5 cm depth, AG2 and AG3 absorption coefficients peaked at 980 Hz with values of 0.86 and 0.81, respectively. A novel approach to measure transmission loss (TL) by using “inferential” principle is presented. This novel method, named “Inferential Transmission Loss Method” (InTLM), revealed that the average TL, TL avg for both AG2 and AG3 SA granules was 14.83 dB and 15.35 dB, respectively. Gelatin silica aerogels doped with sodium dodecyl sulfate (GSA–SDS) composites comprising of 1.2 mm (GSA–AG2) and 1.7 mm (GSA–AG3) granules of various configurations were fabricated and evaluated for absorption coefficients and TL with known traditional acoustic panels. The results showed that GSA–AG3 had a better absorption coefficient over other configurations for the same corresponding thickness reaching the peak of 0.6 from 1300 to 1450 Hz with TL avg between 10.7 and 20.3 decibels. The four-layered GSA–AG2 and GSA–AG3 composites showed exceptionally high absorption from 500 to 800 Hz suitable for narrow band applications. Lastly, the “InTLM” was matched with the sound meter measurements, with high accuracy between 0.3 and 3.2 dB for low-frequency testing (50–1600 Hz).
机译:介绍了从0.50到3.35 mm的各种尺寸的二氧化硅气凝胶(SA)颗粒的声学特性,这些声学特性分布在六组标称尺寸中,并通过两麦克风阻抗管进行了测量。在50至1600 Hz的超低频范围内评估了SA颗粒的吸收系数。观察到,标称尺寸为1.2毫米(AG2)和1.7毫米(AG3)的SA颗粒显示出最佳的吸收系数。用5 cm深度填充的颗粒进行测试时,AG2和AG3的吸收系数在980 Hz处达到峰值,分别为0.86和0.81。提出了一种使用“推论”原理测量传输损耗(TL)的新方法。这种名为“推断传输损耗法”(InTLM)的新方法表明,AG2和AG3 SA颗粒的平均TL,TL avg分别为14.83 dB和15.35 dB。掺杂了十二烷基硫酸钠(GSA–SDS)复合材料的明胶二氧化硅气凝胶,其中包含1.2 mm(GSA–AG2)和1.7 mm(GSA–AG3)各种结构的颗粒,并用已知的传统吸音板评估了吸收系数和TL。结果表明,对于相同的相应厚度,从1300至1450 Hz达到0.6的峰值,且TL avg在10.7至20.3分贝之间,GSA–AG3的吸收系数优于其他配置。四层GSA–AG2和GSA–AG3复合材料在500至800 Hz范围内显示出极高的吸收率,适用于窄带应用。最后,“ InTLM”与声音计的测量值相匹配,用于低频测试(50–1600 Hz)时具有0.3至3.2 dB的高精度。

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