Experimental Study of Acoustic Performance of Porous Metals at High Temperatures

Author:

Zhang Jun Zhe1,Wang Xiao Peng1,Zhang Bo1,Zhang Li Hong1

Affiliation:

1. Ningxia University

Abstract

Based on an improved two-microphone transfer function method, a testing system for the exploration of acoustic performance of porous materials under high temperature conditions was developed with porous foam copper as one of research objects. The acoustic performances of some porous metallic materials were studied in the temperature range of 300°C to 700°C under the premise of ensuring the temperature stability that makes the measurement uncertainty be ± 6°C at high temperatures. The sound absorption coefficient and the acoustic impedance ratio of porous coppers at different ambient temperatures were acquired accordingly. And then the influence of the variation of temperature fields on the acoustic properties of porous metals was analyzed. The experimental results are in good agreement with the theoretical analysis, which proves the rationality of design of the device and provides important references and specific guidance for future study of the acoustic properties of porous metal materials.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference8 articles.

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2. Y. Wang, W. Zhao, D. Huang, Acoustic model of porous materials and its application, Materials Bulletin. 5 (2015) 145-149.

3. B. Zhang, T.N. Chen, K. Feng, H.L. Chen, High temperature sound absorption performance of sintered metal fiber porous materials, Journal of Xi'an Jiaotong University. 11 (2008) 1327-1331.

4. J.F. Zhang, M.Q. Wang, Y.S. Liu, Study on acoustic properties of double-layer micro porous plate under high temperature, Power & Acoustics. 1 (2009) 139-141.

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