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Impact sound insulation of floor systems with hollow brick slabs

机译:带空心砖板的地板系统冲击隔音

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The improvement of acoustic performance construction systems is crucial. The flaws found during the design of a building are often related to the lack of data that characterize the materials used. Floor slab systems are one of the materials that influence acoustic performance, out of which composite slabs made of ribs and hollow bricks show up as common alternatives. The acoustic performance of this specific material is not entirely known, considering the multitude of coatings that can be added. Therefore, this study compared measurements on impact sound pressure level for one-way rib and hollow brick slabs using multiple coatings and gypsum ceiling, besides the 120 mm thick solid concrete refence slab. The coatings included the use of a concrete cover (50 mm); concrete cover (50 mm) + resilient layer (10 mm) + screed (40 mm); concrete cover (50 mm) + resilient layer (10 mm) + screed (40 mm) + gypsum board ceiling with thickness of 12.5 mm and plenum of 150 mm; concrete cover (50 mm) + screed (40 mm) + the above-mentioned gypsum ceiling; and concrete cover (50 mm) + screed (40 mm). The tests were performed in a vertical acoustic resonant chamber built according to ISO 10140-5:2010. The results showed that the use of gypsum ceiling along with resilient layer under the mortar screed reduced the weighted impact sound pressure level by 41 dB, compared to other samples.
机译:声学性能施工系统的改进至关重要。在建筑物设计期间发现的缺陷通常与缺乏表征所用材料的数据有关。地板板系统是影响声学性能的材料之一,其中由肋骨和空心砖制成的复合板作为常用替代品。考虑到可以添加的众多涂层,该特定材料的声学性能不完全已知。因此,除了120毫米厚的固体混凝土refelceplab之外,该研究比较了单向肋和空心砖板的冲击声压力水平的测量。涂层包括混凝土盖(50毫米);混凝土盖(50 mm)+弹性层(10 mm)+熨平板(40 mm);混凝土盖(50毫米)+弹性层(10 mm)+熨平板(40 mm)+石膏板天花板,厚度为12.5毫米,压力通风灯150毫米;混凝土盖(50 mm)+熨平板(40 mm)+上述石膏天花板;和混凝土盖(50 mm)+熨平板(40 mm)。测试是在根据ISO 10140-5:2010建造的垂直声学谐振室中进行的。结果表明,与其他样品相比,砂浆下砂浆下层的石膏天花板与弹性层的使用降低了41dB的加权冲击声压水平。

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