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Utilization of treated Red Meranti wood dust as polymer foam composite for acoustic study

机译:用处理的红色悬挂木粉尘作为声学研究的聚合物泡沫复合材料

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A Red Meranti Wood Dust (RMD) act as a filler for polymer foam composite has been investigated and proved to have ability to absorb sound. In this study, treatment of wood dust with and without acid hydrolysis named as WDB and WDA respectively was use as filler. This study was developed to compare the ability of sound absorption based on treated filler and particle size of wood dust. By choosing the size of 355 urn, three different percentage has been selected which is 10%, 15% and 20% for both conditions. These samples has been tested by using Impedance Tube test according to ASTM E-1050 for sound absorption coefficient, a measurement and Scanning Electron Microscopy (SEM) for determine the porosity for each samples. 10% loaded of WDB as filler gives highest sound absorption coefficient of 0.999 at 4015.63 Hz. Meanwhile for 20% loaded of WDA gives 0.997 at 3228.13 Hz. When comparing the sound absorption coefficient for both sounds absorbing materials, WDB-polymer foam composite RMD showed higher value of sound absorption coefficient, a at higher frequency as compared to WDA-polymcr foam composite.
机译:已经研究了一个红色的木粉(RMD)作为聚合物泡沫复合材料的填料,并证明具有吸收声音的能力。在这项研究中,分别用作WDB和WDA的酸性水解的木粉尘分别用作填料。开发了该研究以比较基于处理填料和木粉尘的粒度的吸声能力。通过选择355 URN的大小,选择了三种不同的百分比,这两个条件为10%,15%和20%。通过使用根据ASTM E-1050的阻抗管测试进行测试,用于吸声系数,测量和扫描电子显微镜(SEM)用于确定每个样品的孔隙率。 10%加载WDB,作为填料,在4015.63Hz处提供0.999的最高音吸收系数。同时对于20%的WDA负载,在3228.13 Hz下提供0.997。当对吸收材料的声音吸收系数进行比较时,与WDA-Polymcr泡沫复合材料相比,WDB-聚合物泡沫复合材料RMD显示出较高频率的吸声系数的值。

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