欢迎登录材料期刊网

材料期刊网

高级检索

以废玻璃为原料,CaCO3和SiC为发泡剂,采用低温烧结-高温发泡法制备出多孔微晶玻璃.利用差热-热重分析仪、X射线粉末衍射仪、扫描电子显微镜等分析手段,研究发泡剂对多孔微晶玻璃表观密度、平均孔径、孔隙率、晶相结构、显微组织和压缩强度的影响规律.结果表明:以CaCO3为发泡剂时,随CaCO3含量增加,多孔微晶玻璃的表观密度与抗压强度都是先减小后增大,孔隙率则与之相反;结晶相为单一硅灰石结构,且结晶度持续增大.以4% CaCO3和不同含量SiC为复合发泡剂时,随SiC含量增加,多孔微晶玻璃的孔隙率和硅灰石含量提高,平均孔径增大,压缩强度随表观密度增大呈线性增大,为0.7~4.7 MPa.

参考文献

[1] 徐美君.废玻璃的回收与利用[J].玻璃与搪瓷,2007(06):37-42.
[2] Yigit Attila;Mustafa Guden;Alper Tasdemirci.Foam glass processing using a polishing glass powder residue[J].CERAMICS INTERNATIONAL,20135(5):5869-5877.
[3] A.A. Francis;M.K. Abdel Rahman;A. Daoud.Processing, structures and compressive properties of porous glass-ceramic composites prepared from secondary by-product materials[J].CERAMICS INTERNATIONAL,20136(6):7089-7095.
[4] Bo Chen;Keqiang Wang;Xingjun Chen;Anxian Lu.Study of Foam Glass with High Content of Fly Ash Using Calcium Carbonate as Foaming Agent[J].Materials Letters,2012:263-265.
[5] H.R. Fernandes;D.U. Tulyaganov;J.M.F. Ferreira.Preparation and characterization of foams from sheet glass and fly ash using carbonates as foaming agents[J].CERAMICS INTERNATIONAL,20091(1):229-235.
[6] J. Garcia-Ten;A. Saburit;E. Bernardo.Development of lightweight porcelain stoneware tiles using foaming agents[J].Journal of the European Ceramic Society,20124(4):745-752.
[7] S. Hasheminia;A. Nemati;B. Eftekhari Yekta.Preparation and characterisation of diopside-based glass-ceramic foams[J].CERAMICS INTERNATIONAL,20123(3):2005-2010.
[8] Xingjun Chen;Anxian Lu;Gao Qu.Preparation and characterization of foam ceramics from red mud and fly ash using sodium silicate as foaming agent[J].CERAMICS INTERNATIONAL,20132(2):1923-1929.
[9] 徐长伟;高杰;孟琦涵;秦任远.发泡剂对废玻璃多孔微晶玻璃物理性能的影响[J].沈阳建筑大学学报(自然科学版),2014(6):1054-1061.
[10] Konig, Jakob;Petersen, Rasmus R.;Yue, Yuanzheng.Fabrication of highly insulating foam glass made from CRT panel glass[J].CERAMICS INTERNATIONAL,20158(8):9793-9800.
[11] Alejandro Saburit Llaudis;Maria Jose Orts Tari;Francisco Javier Garcia Ten.Foaming of flat glass cullet using Si_3N_4 and MnO_2 powders[J].CERAMICS INTERNATIONAL,20095(5):1953-1959.
[12] Petersen, Rasmus R.;Konig, Jakob;Yue, Yuanzheng.The mechanism of foaming and thermal conductivity of glasses foamed with MnO2[J].Journal of Non-Crystalline Solids: A Journal Devoted to Oxide, Halide, Chalcogenide and Metallic Glasses, Amorphous Semiconductors, Non-Crystalline Films, Glass-Ceramics and Glassy Composites,2015:74-82.
[13] 张生芹,邓能运,朱光俊,梁中渝.不同钙基固硫剂CaCO3,Ca(OH)2在煤粉燃烧中固硫性能比较[C].2010年全国冶金物理化学学术会议论文集,2010:453-456.
[14] M. Villegas;T. Sierra;F. Lucas.Oxidation treatments for SiC particles and its compatibility with glass[J].Journal of the European Ceramic Society,20072/3(2/3):861-865.
[15] Xin-mei Hou;Kuo-Chih Chou;Fu-shen Li.A new treatment for kinetics of oxidation of silicon carbide[J].CERAMICS INTERNATIONAL,20092(2):603-607.
[16] Shifeng Liu;Yu-ping Zeng;Dongliang Jiang.Effects of CeO_2 addition on the properties of cordierite-bonded porous SiC ceramics[J].Journal of the European Ceramic Society,20099(9):1795-1802.
[17] Sasmal, Nibedita;Garai, Mrinmoy;Karmakar, Basudeb.Preparation and characterization of novel foamed porous glass-ceramics[J].Materials Characterization,2015:90-100.
[18] Xiuan Xi;Anze Shui;Yunfeng Li.Effects of magnesium oxychloride and silicon carbide additives on the foaming property during firing for porcelain ceramics and their microstructure[J].Journal of the European Ceramic Society,201212(12):3035-3041.
[19] 郑瑛;陈小华;郑楚光.CaCO3分解机理的研究[J].动力工程,2004(2):280-284.
[20] Yu. A. Spiridonov;L. A. Orlova.PROBLEMS OF FOAM GLASS PRODUCTION[J].Glass and ceramics,20039/10(9/10):313-314.
[21] Annres Osorio;Lih-Sheng Turng.Mathematical Modeling and Numerical Simulation of Cell Growth in Injection Molding of Microcellular Plastics[J].Polymer engineering and science,200412(12):2274-2287.
[22] Preparation of high strength foam glass-ceramics from waste cathode ray tube[J].Materials Letters,20108(8):997.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%