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Performance Characterization of Broad Band Sustainable Sound Absorbers Made of Almond Skins

机译:杏仁皮肤宽带可持续发声器的性能表征

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摘要

In order to limit the environmental impact caused by the use of non-renewable resources, a growing research interest is currently being shown in the reuse of agricultural by-products as new raw materials for green building panels. Moreover, the European directives impose the goal of sustainability supporting the investigation of passive solutions for the reduction of energy consumption. Thus, the promotion of innovative building materials for the enhancement of acoustic and thermal insulation of the buildings is an important issue. The aim of the present research was to evaluate the physical, acoustical, and thermal performances of building panels produced by almond skin residues, derived from the industrial processing of almonds. In this paper different mix designs were investigated using polyvinyl acetate glue and gum Arabic solution as binders. Air-flow resistivity σ and normal incidence sound absorption coefficient α were measured by means of a standing wave tube. Thermal conductivity λ, thermal diffusivity α, volumetric heat capacity ρc were measured using a transient plane source device. Finally, water vapor permeability δp was experimentally determined using the dry cup method. Furthermore, a physical characterization of the specimens in terms of bulk density ρb and porosity η allowed to study the correlation existing between the binder and the aggregates and the consequent acoustical and hygrothermal behavior occurring on the different mix designs. The achieved results suggested the investigated materials comparable to the main products currently existing on the market.
机译:为了限制利用不可再生资源造成的环境影响,目前正在农业副产品的重用作为绿色建筑面板的新原料中日益增长的研究兴趣。此外,欧洲指令施加了可持续性的目标,支持对减少能耗的被动解决方案的调查。因此,促进创新的建筑材料,用于增强建筑物的隔音和保温性是一个重要问题。本研究的目的是评估由杏仁皮肤残留物生产的建筑面板的物理,声学和热性能,来自杏仁的工业加工。在本文中,使用聚乙酸乙酸盐胶和胶阿拉伯溶液作为粘合剂来研究不同的混合设计。通过驻波管测量空气流动电阻率σ和正常入射声吸收系数α。热导率λ,使用瞬态平面源装置测量热漫射α,体积热容量ρc。最后,使用干杯法实验测定水蒸气渗透率ΔP。此外,在批量密度ρb和孔隙率η中,试样的物理表征允许研究在粘合剂和聚集体之间存在的相关性以及在不同混合设计上发生的随后的声学和湿热行为。达到的结果表明,调查的材料与当前市场上存在的主要产品相媲美。

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