Mechanical and Acoustic Properties of Ceramsite Sound Absorbing Boards with Gradient Structure

IF 1.7 4区 物理与天体物理
Kai Yang, Guangcheng Long, Zhuo Tang, Xiaoyan Pan, Weiqing Su, Youjun Xie
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引用次数: 1

Abstract

In this work, ceramsite was utilized to fabricate the sound-absorbing boards, in which two types of structure were considered, specifically, single-layer board with homogenous structure and double-layer board with gradient structure. The physical, mechanical and acoustic properties of these prepared ceramsite sound absorbing boards were studied, including the bulk density, compressive strength, flexural strength, softening coefficient, sound absorption coefficient and sound reduction index. The results show that the double-layer board with appropriate mixture design exhibited almost identical bulk density and mechanical strength to the single-layer board. All ceramsite sound absorbing boards had compressive and flexural strengths of more than 3 MPa and 1 MPa, respectively, and also demonstrated good water resistance. In terms of sound absorption and sound insulation properties, the overall performance of the double-layer board with reasonable gradient structure was better than that of the single-layer board. In addition, the physical structure models of ceramsite sound absorbing boards were established to illustrate the variation of mechanical properties and disclose the mechanism of sound absorption and insulation in the material.

Abstract Image

梯度结构陶粒吸声板的力学与声学性能
在本研究中,陶粒被用来制作吸声板,其中考虑了两种结构,即均匀结构的单层板和梯度结构的双层板。研究了所制备陶粒吸声板的物理、力学和声学性能,包括体积密度、抗压强度、抗折强度、软化系数、吸声系数和减声指数。结果表明,适当配比的双层板具有与单层板基本相同的容重和机械强度。所有陶粒吸声板的抗压强度和抗折强度分别大于3 MPa和1 MPa,并且具有良好的耐水性。在吸声和隔声性能方面,采用合理梯度结构的双层板整体性能优于单层板。建立了陶粒吸声板的物理结构模型,分析了陶粒吸声板力学性能的变化规律,揭示了陶粒吸声板的吸声和隔声机理。
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来源期刊
Acoustics Australia
Acoustics Australia ACOUSTICS-
自引率
5.90%
发文量
24
期刊介绍: Acoustics Australia, the journal of the Australian Acoustical Society, has been publishing high quality research and technical papers in all areas of acoustics since commencement in 1972. The target audience for the journal includes both researchers and practitioners. It aims to publish papers and technical notes that are relevant to current acoustics and of interest to members of the Society. These include but are not limited to: Architectural and Building Acoustics, Environmental Noise, Underwater Acoustics, Engineering Noise and Vibration Control, Occupational Noise Management, Hearing, Musical Acoustics.
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