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Design of layered structure with nanofibrous resonant membrane for acoustic applications

机译:用于声学应用的具有纳米纤维共振膜的分层结构设计

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摘要

Textiles such as wool felts are very commonly used materials for sound absorbing purposes on commercial white goods (e.g., washing machines, tumble dryers). In this study, it was aimed to discuss the limitations of wool felts for a domestic type washing machine. Accordingly, an alternative sound absorption material in a layered form was designed, in which a nonwoven covering together with nanofibrous resonant membrane and wool felt were used. The nanofibrous membrane in the structures was developed and its properties were discussed within the scope of the previous works of the authors. Therefore, this paper focused on the spunbond and meltblown nonwovens of various areal densities, which were employed as covering materials in the layered structures. The single and multilayered nonwovens were selected regarding three main criteria, namely acoustic performance, cost, and ease of production. The acoustic performance of the layered (combined) structures was measured in accordance with the relevant standards, and the results were comparatively discussed. In addition to that, Technique for Order Preference by Similarity to Ideal Solution together with Analytic Hierarchy Process was employed not only to determine the best performed nonwoven as a covering layer, but also to find out the optimized solution among the combined (layered) structures developed, so far as the acoustic behavior was concerned.
机译:诸如羊毛毡之类的纺织品是用于商用白色家电(例如洗衣机,滚筒式烘干机)上吸声目的的非常常用的材料。在这项研究中,旨在讨论家用洗衣机的羊毛毡的局限性。因此,设计了一种替代的层状吸声材料,其中使用了一种无纺布覆盖物以及纳米纤维共振膜和羊毛毡。开发了结构中的纳米纤维膜,并在作者先前的工作范围内讨论了其性能。因此,本文着眼于各种面密度的纺粘和熔喷非织造布,它们被用作分层结构中的覆盖材料。选择单层和多层非织造布时要考虑三个主要标准,即声学性能,成本和易于生产。根据相关标准测量了层状(组合)结构的声学性能,并对结果进行了比较讨论。除此之外,还采用了与理想溶液相似的优先顺序技术以及层次分析法,不仅确定了性能最佳的非织造布作为覆盖层,而且还从开发的组合(分层)结构中找出了最佳解决方案。 ,就声学性能而言。

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