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多孔吸声陶粒的制备及孔结构可控研究

Preparation of porous sound absorbing ceramsite and controllable pore structure

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【作者】 黄焕晟吴辉琴张腾解小娟盘荣俊周红梅朱万旭彭翰泽

【Author】 HUANG Huan-sheng;WU Hui-qin;ZHANG Teng;XIE Xiao-juan;PAN Rong-jun;ZHOU Hong-mei;ZHU Wan-xu;PENG Han-ze;School of Civil Engineering and Architecture,Guangxi University of Science and Technology;Sinopec Guangxi Nanning Petroleum Branch Development Infrastructure Division;School of Architecture and Technology,Liuzhou Railway Vocational Technical College;Liuzhou HCM Building Materials Development Co. Ltd;College of Civil and Architecture Engineering,Guilin University of Technology;Shanghai Zhongchi Group Co.,Ltd.;

【通讯作者】 吴辉琴;

【机构】 广西科技大学土木建筑工程学院中石化广西南宁石油分公司发展基建科柳州铁道职业技术学院建筑技术学院柳州汉西鸣建材发展有限公司桂林理工大学土木与建筑工程学院上海中驰集团有限公司

【摘要】 多孔陶粒具有较好的吸声降噪效应,陶粒的孔径、显孔率及孔的形貌特征等微观结构决定着其吸声性能的优劣。为实现对陶粒孔结构的调控,该研究以碳酸氢铵为发泡剂,通过探索热处理机制、发泡剂用量、养护时间等因素对孔结构的影响,制备出具备特殊孔结构的免烧结多孔陶粒,并对陶粒的显孔率、孔微观结构、吸声性能进行表征。结果表明:当发泡剂用量为2. 0%、升温速率为20℃/min、养护时间为0 h时,可制出显孔率高达32. 67%、平均孔径为0. 36μm、孔结构有序均匀排列的多孔陶粒,该陶粒宽频吸声效果良好,在200~2000 Hz范围吸声系数>0. 33,平均吸声系数为0. 54,并能有效改善低频吸声性能。

【Abstract】 Porous ceramsite has better the effects of sound absorption and noise reduction. The sound absorption performance is determined by the pore structure, pore porosity and poremorphology of ceramsite. To realize the control of ceramic hole structure,non-sintered porous ceramic with special pore structure has been prepared by using ammonium bicarbonate as foaming agent. The preparation is done by exploring the impact of heat treatment,foaming agent dosage,curing time and other factors on the pore structure. The prepared ceramiste is subjected to the test of ceramic porosity,pore microstructure,and absorption properties. The results showed that the porous ceramsite could be produced with 32. 67% open porosity,an average pore diameter of 0. 36 μm,and an orderly uniform pore structure when the foaming agent was 2. 0%,the heating rate was20 ℃/min and the curing time was 0 h. The broadband sound absorption effect of the ceramsite was good. Its sound absorption coefficient was greater than 0.30 in the range of 200 ~ 2 000 Hz,with the average absorption the coefficient was 0. 54. The use of this new ceramsite can effectively improve the performance of low frequency sound absorption.

【基金】 广西科技厅科技开发项目(桂科攻1598007-5);2018年广西中青年教师基础能力提升项目(2018YK1164);广西科技大学研究生教育计划创新计划项目(GKYC201812);广西科技大学创新团队支持计划资助
  • 【文献出处】 广西大学学报(自然科学版) ,Journal of Guangxi University(Natural Science Edition) , 编辑部邮箱 ,2018年06期
  • 【分类号】TU552
  • 【被引频次】6
  • 【下载频次】303
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