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Investigation of the effects of different types of interlayers on floor impact sound insulation in box-frame reinforced concrete structures

机译:箱式框架钢筋混凝土结构中不同类型夹层对地板冲击隔音的影响

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In the present study, the effects of resilient isolators and viscoelastic damping materials on reducing heavyweight floor impact sounds from reinforced concrete structures were investigated using FEM simulations and in situ measurements. At first, the dynamic properties of the materials were measured using a beam transfer function method to include the properties in an FEM simulation. As a result, the damping materials provided a higher loss factor and dynamic elastic modulus than the resilient isolators. Subsequently, FEM simulations and in situ measurements were conducted to investigate the effects of the interlayers on the characteristics of floor impact sounds and vibrations. The results indicated that the impact vibration acceleration level and floor impact sounds at low frequencies were significantly decreased owing to the installation of damping materials, whereas the impact sound pressure levels at low frequencies were increased as a result of the use of resilient isolators.
机译:在本研究中,使用有限元模拟和现场测量研究了弹性隔离器和粘弹性阻尼材料对减少钢筋混凝土结构产生的重地板冲击声的影响。首先,使用束传递函数方法测量材料的动态特性,以将这些特性包括在FEM仿真中。结果,阻尼材料提供了比弹性隔离器更高的损耗因子和动态弹性模量。随后,进行了有限元模拟和现场测量,以研究中间层对地板撞击声和振动特性的影响。结果表明,由于安装了阻尼材料,低频冲击振动的加速度和地板的冲击声均明显降低,而低频冲击声的压力水平由于使用了弹性隔离器而增加了。

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