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探索3D打印微穿孔板的声学潜力:一项对比分析。

Exploring the acoustic potential of 3D printed micro-perforated panels: A comparative analysis.

作者信息

Pitchaimani Jeyaraj, Nadimpalli Raghukiran, Mailan Chinnapandi Lenin Babu

机构信息

Advanced Dynamics Lab, Department of Mechanical Engineering, National Institute of Technology Karnataka, Surathkal, Mangalore, 575025, India.

Centre for Automation, Vellore Institute of Technology Chennai, Tamil Nadu, 600127, India.

出版信息

Heliyon. 2024 Mar 26;10(7):e28612. doi: 10.1016/j.heliyon.2024.e28612. eCollection 2024 Apr 15.

Abstract

In the present study, the sound absorption performance of inhomogeneous Micro-Perforated Panels (MPPs) with multiple cavities is investigated. Two models, a three-cavity system and a four-cavity system, are proposed and a numerical study is performed using MATLAB. The models are validated through experimental analysis in an impedance tube. The study meticulously varies the geometrical parameters, including pore diameter, thickness of the MPP, perforation ratio, and back-cavity length. It is found that MPPs with a greater number of sub-cavities have a better sound absorption coefficient than two-cavity systems. The results suggest that the back air cavity is predominantly responsible for multiple peaks, ensuring wideband sound absorption. It is also found that smaller perforation ratios for sub-cavities with larger pore diameters improve sound absorption performance in the lower frequency region. The study indicates that a pore diameter of less than 0.5 mm should be used for better sound absorption above the range of 800-850 Hz, and back cavity length has greater control than pore diameter between 850 Hz and 2000 Hz to make the curve smooth with less fluctuation. The findings have significant implications for the design of MPPs for real-world applications.

摘要

在本研究中,对具有多个腔体的非均匀微穿孔板(MPP)的吸声性能进行了研究。提出了两种模型,即三腔体系统和四腔体系统,并使用MATLAB进行了数值研究。通过在阻抗管中的实验分析对模型进行了验证。该研究精心改变了几何参数,包括孔径、MPP的厚度、穿孔率和后腔长度。研究发现,具有更多子腔体的MPP比双腔体系统具有更好的吸声系数。结果表明,后气腔主要导致多个峰值,确保宽带吸声。还发现,对于孔径较大的子腔体,较小的穿孔率可改善低频区域的吸声性能。研究表明,对于800 - 850Hz以上的频率,为获得更好的吸声效果应使用小于0.5mm的孔径,并且在850Hz至2000Hz之间,后腔长度比孔径对使曲线平滑且波动更小具有更大的控制作用。这些发现对实际应用中MPP的设计具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f605/11004209/bc97c7a6e41b/gr1.jpg

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