首页> 美国卫生研究院文献>Materials >Impacts of Casting Scales and Harsh Conditions on the Thermal Acoustic and Mechanical Properties of Indoor Acoustic Panels Made with Fiber-Reinforced Alkali-Activated Slag Foam Concretes
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Impacts of Casting Scales and Harsh Conditions on the Thermal Acoustic and Mechanical Properties of Indoor Acoustic Panels Made with Fiber-Reinforced Alkali-Activated Slag Foam Concretes

机译:铸造鳞片和苛刻条件对纤维增强碱活化矿渣泡沫混凝土制成的室内吸音板的热声和机械性能的影响

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摘要

This paper presents experimental results regarding the efficiency of using acoustic panels made with fiber-reinforced alkali-activated slag foam concrete containing lightweight recycled aggregates produced by using Petrit-T (tunnel kiln slag). In the first stage, 72 acoustic panels with dimension 500 × 500 × 35 mm were cast and prepared. The mechanical properties of the panels were then assessed in terms of their compressive and flexural strengths. Moreover, the durability properties of acoustic panels were studied using harsh conditions (freeze/thaw and carbonation tests). The efficiency of the lightweight panels was also assessed in terms of thermal properties. In the second stage, 50 acoustic panels were used to cover the floor area in a reverberation room. The acoustic absorption in diffuse field conditions was measured, and the interrupted random noise source method was used to record the sound pressure decay rate over time. Moreover, the acoustic properties of the panels were separately assessed by impedance tubes and airflow resistivity measurements. The recorded results from these two sound absorption evaluations were compared. Additionally, a comparative study was presented on the results of impedance tube measurements to compare the influence of casting volumes (large and small scales) on the sound absorption of the acoustic panels. In the last stage, a comparative study was implemented to clarify the effects of harsh conditions on the sound absorption of the acoustic panels. The results showed that casting scale had great impacts on the mechanical and physical properties. Additionally, it was revealed that harsh conditions improved the sound properties of acoustic panels due to their effects on the porous structure of materials.
机译:本文介绍了有关使用由纤维增强碱活化矿渣泡沫混凝土制成的隔音板的效率的实验结果,该泡沫混凝土包含使用Petrit-T(隧道窑炉渣)生产的轻质再生骨料。在第一阶段,铸造并准备了尺寸为500×500×35 mm的72块隔音板。然后根据其抗压强度和抗弯强度评估板的机械性能。此外,在恶劣条件下(冻结/融化和碳化测试)研究了隔音板的耐久性能。还根据热性能评估了轻质板的效率。在第二阶段,使用50个隔音板覆盖混响室的地板区域。测量了在扩散场条件下的声吸收,并使用间断的随机噪声源方法记录了声压随时间的衰减率。此外,通过阻抗管和气流电阻率测量分别评估面板的声学性能。比较了这两个吸声评估的记录结果。此外,还对阻抗管的测量结果进行了比较研究,以比较铸造体积(大尺寸和小尺寸)对吸音板吸声的影响。在最后阶段,进行了一项比较研究,以澄清恶劣条件对吸音板吸声的影响。结果表明,铸造水垢对力学性能和物理性能影响很大。另外,据揭示,苛刻的条件由于其对材料的多孔结构的影响而改善了隔音板的声音特性。

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