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Using sound pressure level and vibration velocity method to determine sound reduction index of lightweight partitions

机译:用声压级和振动速度法确定轻质隔断的降声指标

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摘要

Nowadays, lightweight building structures are widely used by the construction industry as a more natural and cost-effective method. The purpose of this study is to compare between sound pressure level and vibration velocity method for sound reduction index determination for single- and double-leaf gypsum board partitions. The sound pressure level method was carried out according to the requirements of ISO 140-3:1997, and the vibration velocity method (V) was carried out according to some criteria of ISO 10848-1:2006. Regarding double-leaf partitions, measurements were carried out with the leaves separated by 5- and 10-cm air gaps. The effect of cavity filling with absorbing materials was studied experimentally. The space between the leaves was filled with Rockwool and polyurethane to illustrate the effect of cavity absorption on the sound reduction index behavior. It was found that there is good agreement between the two methods. Also, cavity filling with a 10-cm absorbing material such as Rockwool increases the sound reduction index at the critical frequency by 7 dB using sound pressure method and 4 dB using vibration velocity method.
机译:如今,轻质建筑结构已被建筑业广泛采用,是一种更自然,更经济的方法。本研究的目的是比较声压级和振动速度法确定单叶和双叶石膏板隔板的降声指标。声压级方法是按照ISO 140-3:1997的要求进行的,而振动速度法(V)是根据ISO 10848-1:2006的某些标准进行的。关于双叶隔板,以5厘米和10厘米的气隙隔开树叶进行测量。实验研究了吸收材料填充腔体的效果。叶子之间的空间充满了Rockwool和聚氨酯,以说明空腔吸收对降噪指数行为的影响。发现两种方法之间有很好的一致性。而且,用诸如岩石羊毛之类的10厘米吸收材料填充空腔,使用声压法在临界频率处的声衰减指数增加7 dB,而使用振动速度法则使声音衰减指数增加4 dB。

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