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Hybrid Waste Filler Filled Bio-Polymer Foam Composites for Sound Absorbent Materials

机译:用于隔音材料的混合废物填充生物聚合物泡沫复合材料

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Sound absorption materials are one of the major requirements in many industries with regards to the sound insulation developed should be efficient to reduce sound. This is also important to contribute in economically ways of producing sound absorbing materials which is cheaper and user friendly. Thus, in this research, the sound absorbent properties of bio-polymer foam filled with hybrid fillers of wood dust and waste tire rubber has been investigated. Waste cooking oil from crisp industries was converted into bio-monomer, filled with different proportion ratio of fillers and fabricated into bio-polymer foam composite. Two fabrication methods is applied which is the Close Mold Method (CMM) and Open Mold Method (OMM). A total of four bio-polymer foam composite samples were produce for each method used. The percentage of hybrid fillers; mixture of wood dust and waste tire rubber of 2.5 %, 5.0%, 7.5% and 10% weight to weight ration with bio-monomer. The sound absorption of the bio-polymer foam composites samples were tested by using the impedance tube test according to the ASTM E-1050 and Scanning Electron Microscope to determine the morphology and porosity of the samples. The sound absorption coefficient (a) at different frequency range revealed that the polymer foam of 10.0 % hybrid fillers shows highest a of 0.963. The highest hybrid filler loading contributing to smallest pore sizes but highest interconnected pores. This also revealed that when highly porous material is exposed to incident sound waves, the air molecules at the surface of the material and within the pores of the material are forced to vibrate and loses some of their original energy. This is concluded that the suitability of bio-polymer foam filled with hybrid fillers to be used in acoustic application of automotive components such as dashboards, door panels, cushion and etc.
机译:吸音材料在许多行业与问候到发达隔音的主要要求之一应该是有效减少声音。这也是重要的生产吸音材料更便宜的和用户友好的方式在经济上贡献英寸因此,在本研究中,填充有木屑和废旧轮胎橡胶混合填料的生物聚合物发泡体的吸音性能进行了研究。从脆产业废烹饪油转化成生物单体,填充有填料的不同比例和比率制成的生物聚合物泡沫复合材料。两种制造方法被应用于其是关闭模具方法(CMM)和开模方法(OMM)。共有4个生物聚合物泡沫复合材料样品是为每个使用的方法产生。混合填充剂的百分比;的木屑和2.5%的废旧轮胎橡胶,5.0%,7.5%和10%重量的混合物与生物单体重量比。所述生物聚合物泡沫复合材料的样品的吸声通过根据ASTM E-1050和扫描电子显微镜使用的阻抗管测试,以确定样品的形态和孔隙率测试。在不同的频率范围的声音吸收系数的(a)表明,10.0%的混合填料显示最高一个的0.963的聚合物泡沫。最高的混合填料装载贡献最小的孔径,但是最高的互连孔。这也揭示了当高度多孔的材料暴露于入射声波,在材料的表面和内部的空气分子的材料的孔被强制振动并失去了一些它们的原始能量。这个结论是在汽车部件,如仪表板,门板,坐垫等的声学应用中使用填充有混合的填料的生物聚合物发泡体的适宜性

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