TEST METHOD TO DETERMINE THE ACOUSTIC PROPERTIES OF BUILDING MATERIAL BY USING MICROPHONE IMPEDANCE TUBE

IF 0.1 Q4 ACOUSTICS Akustika Pub Date : 2021-01-01 DOI:10.36336/akustika20214036
Sourabh Dogra, Arpan Gupta
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引用次数: 0

Abstract

The paper discusses a simple and low-cost method to design four microphone impedance tube of measuring the acoustic properties of building materials. The acoustic properties of the material are defined by the reflection coefficient, absorption coefficient, and transmission coefficient. The experimental setup follows the ASTM-E2611 standard of four microphone impedance tube with two load boundary conditions to measure these coefficients. The setup consists of four microphones around a brass tube with the speaker at one end and termination at the other. Raw data from the four microphones is obtained through a Virtual Instrument (VI) program developed in LabView. The novelty in the design is the tapered connection between the two pipes connected via the sample holder. The mathematical equation involved in estimating acoustical properties is solved in MATLAB 2019a. The reflection and absorption coefficient data of ephony fibbrette of 15 mm thickness are compared with the data provided by an accredited laboratory. The experimental results of the in-house designed impedance tube are in good agreement with the lab results. This material is used in the auditorium, theatres for hearing comfort. Further, two new samples of ephony fibbrette along with wood fibre cement and damper has been analysed. It has been found that adding a layer of wood fibre results in an increase in the absorption coefficient whereas the addition of the damper results in an increase in the reflection coefficient.
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用传声器阻抗管测定建筑材料声学特性的试验方法
本文讨论了一种简单、低成本地设计测量建筑材料声学性能的四传声器阻抗管的方法。材料的声学特性由反射系数、吸收系数和透射系数来定义。实验设置遵循ASTM-E2611标准的四传声器阻抗管双负载边界条件来测量这些系数。该装置由四个围绕黄铜管的麦克风组成,扬声器在一端,终端在另一端。通过LabView开发的虚拟仪器(VI)程序获取四个麦克风的原始数据。该设计的新颖之处在于通过样品夹连接的两根管子之间的锥形连接。在MATLAB 2019a中求解了声学特性估计所涉及的数学方程。将厚度为15mm的回声纤维的反射和吸收系数数据与权威实验室提供的数据进行了比较。自行设计的阻抗管的实验结果与实验结果吻合较好。这种材料用于礼堂、剧院的听觉舒适。此外,还分析了两种新样品的回声纤维与木纤维水泥和阻尼器。已经发现,增加一层木纤维导致吸收系数增加,而增加阻尼器导致反射系数增加。
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来源期刊
Akustika
Akustika ACOUSTICS-
CiteScore
0.80
自引率
0.00%
发文量
4
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