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Analysis of coir fiber acoustical characteristics

机译:椰壳纤维声学特性分析

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Coir fiber from coconut husk is an important agricultural waste in Malaysia. Acoustic absorption coefficient of the fiber as a porous material is studied in this paper. Two types of fiber are investigated, fresh from wet market and industrial prepared mixed with binder. Moreover two analytical models, namely; Delany-Bazley and Biot-Allard are used for analysis. Experimental measurements in impedance tube are conducted to validate the analytical outcomes. Results show that fresh coir fiber has an average absorption coefficient of 0.8 at f> 1360 Hz and 20 mm thickness. Increasing the thickness is improved the sound absorption in lower frequencies, having the same average at f> 578 Hz and 45 mm thickness. Delany-Bazley technique can be used for both types of fiber while Biot-Allard method is compensated for the industrial prepared fiber considering the binder additive. This form generally shows poor acoustical absorption in low frequencies. Inevitably, fiber has to be mixed with additives in commercial use to enhance its characteristics such as stiffness, unti-fungus and flammability. Hence other approaches such as adding air gap or perforated plate should be used to improve the acoustical properties of industrial treated coir fiber.
机译:椰子壳中的椰壳纤维是马来西亚重要的农业废料。本文研究了纤维作为多孔材料的吸声系数。研究了两种类型的纤维,分别是从湿市场购得的纤维和与粘合剂混合后工业制备的纤维。此外,还有两个分析模型:使用Delany-Bazley和Biot-Allard进行分析。在阻抗管中进行实验测量以验证分析结果。结果表明,新鲜椰壳纤维在f> 1360 Hz且厚度为20 mm时的平均吸收系数为0.8。增加厚度可以改善较低频率下的声音吸收,在f> 578 Hz且厚度为45 mm时具有相同的平均值。 Delany-Bazley技术可用于两种类型的纤维,而考虑到粘合剂添加剂,Biot-Allard方法可补偿工业制备的纤维。这种形式通常在低频下显示出较差的声学吸收。不可避免地,必须在商业用途中将纤维与添加剂混合,以增强其特性,例如刚度,无真菌和易燃性。因此,应使用其他方法(例如增加气隙或穿孔板)来改善工业处理的椰壳纤维的声学性能。

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