材料科学
复合材料
声阻抗
隔音
声能
透水混凝土
泡沫混凝土
衰减系数
多孔介质
声衰减
吸收(声学)
消散
声学
声波
声音传输等级
衰减
金属泡沫
胶凝的
降噪系数
曲折
声音(地理)
压缩(物理)
复合泡沫
噪音(视频)
透射系数
电阻抗
吸水率
抗压强度
多孔性
作者
Yuanyi Yang,Caiying Li,Ruiqi Zou,Xinghua Liu,Siyu Wei,Ke Cheng,Li Song,Tingting Yang
标识
DOI:10.1016/j.conbuildmat.2025.145033
摘要
The sound absorption performance of porous cementitious materials was constrained by limitations in pore structure optimization, posing significant challenges in achieving high acoustic absorption properties in cement-based materials. In this work, sound absorbing foam concretes with different density, average pore diameter, and open porosity were fabricated through a chemical foaming method followed by a freeze-drying process. Furthermore, the sound absorbing performance, interacting mechanism and compressive strength of the foam concrete were comprehensively investigated. From the result, due to the sound resonance effect and the acoustic impedance matching characteristic, the sound absorbing capacity of foam concrete was closely related to the material's density, and the optimal sound absorbing performance of foam concrete was achieved at an average pore diameter of 3 mm and the open porosity of 73 %. The average sound absorption coefficient and noise reduction coefficient values of the optimal sample have reached 0.49 and 0.43, indicating an increase of 113 % and 169 % compared to foam concrete materials at the same density level. Owing to the good acoustic impedance matching, network-like porous structure, and appropriate open porosity of foam concrete, the transmission pathways of incident sound waves were significantly complicated, the probability of low-frequency sound wave attenuation was increased, and the heat exchange between sound waves and air was also enhanced. Therefore, a remarkable improvement in the sound energy dissipation capacity of foam concrete was achieved, providing a novel strategy for the design of sound absorbing foam concrete. • Sound absorbing foam concretes was fabricated by a foaming and freeze-drying process. • Optimal sound absorbing performance of foam concrete was achieved. • Interacting mechanisms between sound absorption and pore structure was studied. • Novel strategy for the design of sound absorbing foam concrete was proposed.
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