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新型多孔水泥基陶粒吸声材料的性能分析
引用本文:李青,酆磊,朱万旭,周红梅.新型多孔水泥基陶粒吸声材料的性能分析[J].科学技术与工程,2017,17(1).
作者姓名:李青  酆磊  朱万旭  周红梅
作者单位:广西科技大学 土木建筑工程学院 广西柳州,广西柳州市东环大道268号广西科技大学 土木建筑工程学院 广西柳州,广西科技大学 土木建筑工程学院 广西柳州,广西科技大学 土木建筑工程学院 广西柳州
基金项目::广西科技大学科学(校科自1419209)
摘    要:以黏土质陶粒和42.5级普通硅酸盐水泥作为主要原料,添加一定的辅助材料,研制出一种新型多孔水泥基陶粒吸声材料。经过研究发现:颗粒级配、压缩比、空腔、表面形态、不同安装方法等对该材料吸声性能都有一定的影响。0.5~2.5 mm粒径范围的陶粒,对100~1 800 Hz的降噪效果较好;材料压缩比为1.3时,对100~1 800 Hz的吸声效果较好,其降噪系数为0.55;该材料后面预留50 mm背腔,低频吸声性能得到有效提高;表面处理过的材料,其暴露于声场中的面积增大,对声波具有更充分的吸收。

关 键 词:黏土质陶粒  吸声材料  性能测试  降噪
收稿时间:2016/7/19 0:00:00
修稿时间:2016/8/17 0:00:00

Performance analysis of a new type of porous cement based ceramic sound absorbing material
Li qing,Zhu wanxu and Zhou hongmei.Performance analysis of a new type of porous cement based ceramic sound absorbing material[J].Science Technology and Engineering,2017,17(1).
Authors:Li qing  Zhu wanxu and Zhou hongmei
Institution:College of civil and architecture engineering,Guangxi University of Science and Technology,Liuzhou,College of civil and architecture engineering,Guangxi University of Science and Technology,Liuzhou
Abstract:A new type of porous cement based ceramic material was developed by using clay aggregate and 42.5 grade Portland cement as main raw materials and adding some auxiliary materials.Through the research, it is found that the particle size distribution, compression ratio, cavity, surface morphology, and different installation methods have a certain influence on the sound absorption performance of the material.When the size range of 0.5-2.5mm particles, the noise reduction effect of 100 ~ 1800Hz is better; when the material compression ratio is 1.3, 100 ~ 1800Hz sound absorption effect is better, the noise reduction coefficient 0.55; the back of the material reservation 50mm back cavity, low frequency sound absorption properties of materials is improved; at the surface and the material to make the exposure on the sound field in the area increased, on acoustic has more fully absorption.
Keywords:clay  ceramsite  sound  absorbing material  performance testing  noise reduction
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