Jv Xin, Wu Jinwu, Mao Qibo, Li Qi, Zhang Tianhang
School of Power and Energy, Nanchang HangKong University, 696 South Fenghe Avenue, Nanchang 330063, China.
Materials (Basel). 2024 Dec 22;17(24):6282. doi: 10.3390/ma17246282.
The sound absorption structure of a microperforated plate has many advantages and has great potential in the field of noise control. In order to solve the problem of broadband sound absorption of microperforated plates, a series acoustic structure of microperforated plates of unequal cross-section was designed based on the traditional microperforated plate series acoustic structure. Compared with the traditional series structure, the sudden change of cross-section increases the sound energy dissipation and greatly improves the sound absorption performance. Through the analysis of its parameters, when the overall thickness of the structure is 20 mm, its sound absorption coefficient is above 0.5 in the frequency range of 1000-3450 Hz; there are three formants, and the sound absorption coefficients corresponding to the three formants reach 1. This study provides new ideas and methods for the design of broadband acoustic structures.
微穿孔板吸声结构具有诸多优点,在噪声控制领域具有巨大潜力。为解决微穿孔板的宽带吸声问题,基于传统微穿孔板串联声学结构设计了一种不等截面微穿孔板串联声学结构。与传统串联结构相比,截面的突变增加了声能损耗,大大提高了吸声性能。通过对其参数分析,当结构总厚度为20mm时,在1000 - 3450Hz频率范围内吸声系数大于0.5;存在三个共振峰,三个共振峰对应的吸声系数均达到1。本研究为宽带声学结构设计提供了新的思路和方法。