Gliścińska Eulalia, Michalak Marina
Faculty of Material Technologies and Textile Design, Lodz University of Technology, Textile Institute, 116 Zeromskiego Street, Lodz, 90-924, Poland.
Sci Rep. 2025 Feb 8;15(1):4790. doi: 10.1038/s41598-025-89151-5.
Absorption of low-frequency sound is a difficult engineering problem because long-wave sound energy is poorly dissipated. Traditional sound absorbing materials such as porous materials, microperforated sheets or sound absorbing wedges have a poor low-frequency sound absorption performance. In this work a porous composite absorbing plate connected with a resonant cavity is developed to absorb low frequency sounds. The special developed sound-absorbing plate is rigid and consists of a more fibrous layer (up to approx. 3.0 mm thick) and a more plastic, thin polymer surface layer (up to approx. 0.5 mm thick). The walls of resonant cavity are rigid and smooth. By changing the angle between the absorbing plate and the direction of the incident sound wave and changing the length of the cavity, it is possible to create acoustic systems with a given level of sound absorption and in a given low-frequency range. The larger the angle, the maximum absorption occurs for sounds of lower frequencies. As the cavity length increases, the range of maximum absorption occurring at the resonant frequency shifts towards lower frequencies and the maximum value of the sound absorption coefficient increases. The results are compared with composite variant without a polymer surface layer.
低频声音的吸收是一个棘手的工程问题,因为长波声能很难消散。传统的吸声材料,如多孔材料、微穿孔板或吸声楔,低频吸声性能较差。在这项工作中,开发了一种与共振腔相连的多孔复合吸声板来吸收低频声音。这种专门开发的吸声板是刚性的,由一个较厚的纤维层(厚度可达约3.0毫米)和一个较薄的、更具塑性的聚合物表面层(厚度可达约0.5毫米)组成。共振腔的壁是刚性且光滑的。通过改变吸声板与入射声波方向之间的角度以及改变腔体的长度,可以创建具有给定吸声水平且在给定低频范围内的声学系统。角度越大,低频声音的吸收量最大。随着腔体长度的增加,在共振频率处发生最大吸收的频率范围向低频方向移动,且吸声系数的最大值增加。将结果与没有聚合物表面层的复合变体进行了比较。