Nurzyński Jacek, Nowotny Łukasz
Instytut Techniki Budowlanej, 00-611 Warsaw, Poland.
Materials (Basel). 2023 Mar 6;16(5):2128. doi: 10.3390/ma16052128.
Airborne and impact sound insulation of composite panels arranged in different configurations were investigated in this study. The use of Fiber Reinforced Polymers (FRPs) in the building industry is growing; however, poor acoustic performance is a critical issue for their general employment in residential buildings. The study aimed to investigate possible methods of improvement. The principal research question involved the development of a composite floor satisfying acoustic expectations in dwellings. The study was based on the results of laboratory measurements. The airborne sound insulation of single panels was too low to meet any requirements. The double structure improved the sound insulation radically at middle and high frequencies but the single number values were still not satisfactory. Finally, the panel equipped with the suspended ceiling and floating screed achieved adequate level of performance. Regarding impact sound insulation, the lightweight floor coverings were ineffective and they even enhanced sound transmission in the middle frequency range. Heavy floating screeds behaved much better but the improvement was too small to satisfy acoustic requirements in residential buildings. The composite floor with a dry floating screed and a suspended ceiling appeared satisfactory with respect to airborne and impact sound insulation; the single number values were R (C; C) = 61 (-2; -7) dB, and L = 49 dB, respectively. The results and conclusions outline directions for further development of an effective floor structure.
本研究对以不同配置排列的复合板的空气声隔声和撞击声隔声进行了调查。纤维增强聚合物(FRP)在建筑行业的应用正在增加;然而,声学性能不佳是其在住宅建筑中广泛应用的一个关键问题。该研究旨在探究可能的改进方法。主要研究问题涉及开发一种满足住宅声学期望的复合地板。该研究基于实验室测量结果。单层板的空气声隔声太低,无法满足任何要求。双层结构在中高频段从根本上改善了隔声效果,但单个数值仍不令人满意。最后,配备吊顶和浮动找平层的板材实现了足够的性能水平。关于撞击声隔声,轻质地板覆盖物无效,甚至在中频范围内增强了声音传播。重型浮动找平层表现要好得多,但改善太小,无法满足住宅建筑的声学要求。具有干式浮动找平层和吊顶的复合地板在空气声隔声和撞击声隔声方面表现令人满意;单个数值分别为R(C;C)=61(-2;-7)dB和L=49dB。研究结果和结论为有效地板结构的进一步发展指明了方向。