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Sound insulation of timber hollow box floors: Collection of laboratory measurement data and trend analysis

机译:木材空心箱楼层隔离:实验室测量数据的集合及趋势分析

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摘要

The industrialisation of timber buildings has improved strongly in recent years. When long span is required, timber hollow-box floor elements are increasingly used due to their structural performance. The aim of this paper is to assess the acoustic performance of timber hollow-box floors, determine the governing parameters and identify the corresponding trends. We collected results from laboratory measurements covering both airborne and impact sound insulation from four different laboratories covering a wide range of application. Data include the bare floor constructions and their combination with different floating floors including both lightweight solutions and hybrid solution. We performed the analysis focusing on following parameters: element stiffness, element mass per unit area, dynamic stiffness of the resilient layer, cavity filling and floating floor material. We present the collected data both frequency-dependent and as single number quantities. General trends and features are identified in the frequency-dependent diagrams. A further detailed analysis is based on the single number quantities. It includes a general relationship between element mass per unit area and given requirements for R’_(W)+ C_(50-5000)and L’_(n,w)+ C_(I,50-2500). Furthermore, diagrams are presented illustrating the dependence of impact sound insulation numbers on the cavity filling, the dynamic stiffness of the resilient layer and the type of material used for the floating floor. The additional mass in the cavity improves both airborne and impact sound insulation by minimum 10 dB. This, combined with a floating floor, allows the fulfilment of a wide range of requirements.
机译:近年来,木材建筑的产业化强劲。当需要长跨度时,由于其结构性能,越来越多地使用木材空心箱地板元件。本文的目的是评估木材空心箱地板的声学性能,确定控制参数并确定相应的趋势。我们收集了实验室测量结果,这些结果涵盖了空气传播和来自四种不同实验室的冲击隔音,涵盖了各种应用的不同实验室。数据包括裸地板结构及其与不同浮动地板的组合,包括轻量级解决方案和混合溶液。我们进行了专注于以下参数的分析:元素刚度,每单位面积元件质量,弹性层的动态刚度,腔填充和浮动地板材料。我们介绍了频率相关的收集数据和单个数量。在频率相关图中识别了一般趋势和特征。进一步的详细分析基于单个数量。它包括每单位面积的元素质量与R'_(W)+ C_(50-5000)和L'_(n,w)+ c_(i,50-2500)之间给定的一般关系。此外,提出了图示的图,示出了冲击隔音数对腔填充物的依赖性,弹性层的动态刚度以及用于浮底的材料的类型。腔内的额外质量可以通过最小10 dB改善空气传播和冲击隔音。这与浮楼结合使用,允许满足广泛的要求。

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