首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >A Study on Micro-Perforated Panel Absorber with Multi-Layered and Parallel-Arranged Structure to Enhance Sound Absorption Performance
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A Study on Micro-Perforated Panel Absorber with Multi-Layered and Parallel-Arranged Structure to Enhance Sound Absorption Performance

机译:具有多层和平行布置结构的微穿孔面板吸收器,以增强吸声性能

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摘要

Micro-perforated panel absorber (MPPA) can be manufactured using various materials and can be applied to various fields. There are restrictions on applying MPPA because of the narrow sound absorption bandwidth. To solve this problem, the design parameters are controlled or the MPPA is constructed in parallel or multilayer structures. However, It is not easy to make holes of diameter of 0.1mm or less in a general method. If there are constraint conditions, MPPA may not be designed for the target frequency band. We propose MPPA combined with multi-layer structure and parallel arrangement to effectively enhance the sound absorption performance. A calculation method for the absorption coefficient of the proposed MPPA is derived and the validity of calculation results is confirmed through the experiments. The sound absorption characteristics according to change of design parameters and structural change are analyzed and the following results are obtained. First, MPP with one kind of hole and various cavity depths is more effective in enhancing the sound absorption performance than MPP with various types of holes and one type of cavity depth. Second, in double-layer MPPA, it is confirmed again that the absorption performance is improved when the hole diameter and porosity of the MPP from the source are higher than those of the MPP from a rigid wall. Third, when MPPA with multi-layer structure and parallel arrangement is designed, both MPP properties and cavity depths should be considered to achieve good performance of MPPA. Based on the results, we design the prototype MPPA. Result of reverberation room test shows that prototype has a good sound absorption performance. We will improve the prototype MPPA and conduct a field test to reduce railway noise such as squeal noise.
机译:微穿孔面板吸收器(MPPA)可以使用各种材料制造,并且可以应用于各种领域。由于吸收带宽窄,有限制应用MPPA。为了解决这个问题,控制设计参数或者MPPA以平行或多层结构构造。然而,在一般方法中,不容易使直径为0.1mm或更小的孔。如果存在约束条件,则可能无法为目标频带设计MPPA。我们提出了MPPA结合多层结构和并联布置,以有效提高吸声性能。推导出拟议的MPPA的吸收系数的计算方法,通过实验证实了计算结果的有效性。分析了根据设计参数变化和结构变化的吸声特性,并获得了以下结果。首先,具有一种孔和各种腔深度的MPP更有效地增强了具有各种孔的MPP和一种类型的腔深度的吸声性能。其次,在双层MPPA中,再次确认,当来自源极的MPP的孔直径和孔隙率高于来自刚性壁的MPP的孔径和孔隙率时,得到了吸收性能。第三,当设计具有多层结构和并联布置的MPPA时,应考虑MPP特性和腔深度来实现MPPA的良好性能。根据结果​​,我们设计原型MPPA。混响室测试结果表明,原型具有良好的吸收性能。我们将改善原型MPPA并进行现场测试,以减少尖叫声噪声等铁路噪声。

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