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Effect of microfiber layers on acoustical absorptive properties of nonwoven fabrics

机译:微纤维层对非织造织物声吸收性能的影响

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摘要

There are several types of sound absorptive materials, such as natural and synthetic fibers, acoustic mineral wool, acoustic polyester panels, acoustic foam, cotton batts, that reduce the acoustic energy of a sound wave as the wave passes through. In this work, the use of nonwoven materials made of cotton, polyester, and polypropylene fibers for the development of sound absorptive nonwoven materials has been investigated. Samples of different materials (cotton, cotton/polyester blend, polyester fibers needle punched, and polypropylene melt blown nonwoven) and multilayer structures were tested on the designed impedance tube. Acoustic absorption properties of the fiber assemblies were studied in the frequency region of 100-1500 Hz. The values of sound absorption coefficient for different samples indicated that polypropylene microfiber melt blown nonwoven sample displayed a good sound absorption behavior in the entire frequency range. The use of multilayer samples improves the sound absorption coefficient with the condition that one of the layers is a thin melt blown nonwoven layer. The formation of nonwoven absorbent material consisted of hybrid layers, significantly reduces the resultant average sound absorption coefficient, especially when the upper layer is made from finer fibers of melt blown nonwoven of low air permeability value, and in this case the improvement reaches 50%. The use of melt blown layers of fine fibers values of noise reduction coefficient may reach 0.8. The multilayer nonwoven sound absorber design should take into consideration specific noise reduction coefficient values, not the absolute ones, particularly when the weight of the absorber is playing a decisive role.
机译:有几种类型的吸声材料,如天然和合成纤维,声学矿棉,声学聚酯板,声泡沫,棉坯,随着波路通过时,减小声波的声能。在这项工作中,已经研究了使用由棉,聚酯和聚丙烯纤维制成的非织造材料用于开发吸声非织造材料的开发。在设计的阻抗管上测试了不同材料(棉,棉/聚酯混合物,聚酯纤维针刺和聚丙烯熔喷非织造织物)和多层结构的样品。在100-1500Hz的频率区域中研究了纤维组件的声学吸收性能。不同样品的声音吸收系数的值表明聚丙烯微纤维熔喷非织造样品在整个频率范围内显示出良好的吸声行为。多层样品的使用改善了吸音系数,其中一个层是薄熔喷非织造层的条件。非织造吸收材料的形成由杂化层组成,显着降低了所得的平均吸收系数,特别是当上层由熔体熔喷的更细纤维的低透气性值制成时,并且在这种情况下,改善达到50%。使用熔喷层的细纤维的噪声降低系数的值可以达到0.8。多层无纺布吸声设计应考虑到特定的降噪系数值,而不是绝对的降噪系数值,特别是当吸收器的重量在发挥决定性的作用时。

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