Morphological analysis of porosity and sound absorption in sustainable materials from rice husk

IF 1.4 Q3 ACOUSTICS
B. Peceño, EM Perez-Soriano, José D. Ríos, Y. Luna-Galiano, H. Cifuentes, Carlos Leiva Fernández
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引用次数: 2

Abstract

This study proposes a composite material that incorporates rice husk. This research focuses on an experimental analysis of the physical, mechanical and acoustic performance of composite materials made of rice-husk waste. Various ratios of rice husk/resins have been employed. Complementary, X-ray computed tomography technique has been used to characterise a representative and extensive volume of material at the pore level, ranging from pore sizes of 100 μm to several millimetres Furthermore, detailed information of key factors of pore properties inside the matrix (pore size, sphericity, position, tortuosity and permeability) has been provided. All the compositions present high sound-absorption coefficients, with noise-reduction coefficients ranging from 0.39 to 0.52, and suitable compressive strength (>1 MPa). From the results, when the rice husk/resin ratio was decreased, the pore size fell between 1 and 4 mm, and the permeability reduced; in contrast, the compressive strength increased, although the sound absorption capacity diminished.
稻壳可持续材料孔隙率和吸声特性的形态学分析
这项研究提出了一种结合稻壳的复合材料。本研究重点对稻壳废弃物复合材料的物理、力学和声学性能进行了实验分析。已经使用了不同比例的稻壳/树脂。互补的X射线计算机断层扫描技术已被用于表征孔隙水平上具有代表性和广泛体积的材料,孔隙大小从100 μm至几毫米。此外,还提供了基质内部孔隙特性的关键因素(孔径、球形度、位置、弯曲度和渗透率)的详细信息。所有的组合物都具有高的吸声系数,降噪系数在0.39到0.52之间,并且具有合适的抗压强度(>1 MPa)。结果表明,当稻壳/树脂比例降低时,孔径在1到4之间 mm,渗透性降低;相反,压缩强度增加,但吸声能力降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
BUILDING ACOUSTICS
BUILDING ACOUSTICS ACOUSTICS-
CiteScore
4.10
自引率
11.80%
发文量
22
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