期刊文献+

Effects of Characteristics of Fly Ash on the Properties of Geopolymer

Effects of Characteristics of Fly Ash on the Properties of Geopolymer
下载PDF
导出
摘要 The properties of two types of fly ash geopolymers made from class F fly ashes produced in wet bottom and dry bottom boilers were investigated in the present study. The source material used in the geopolymer concrete was activated with sodium hydroxide and sodium silicate solution. The results revealed that the geopolymer produced with wet bottom boiler fly ash(CZ-FA)hardened quickly, and had higher early-age strength and lower shrinkage than the geopolymer produced with dry bottom boiler fly ash(SX-FA). The compressive strength of the two geopolymers made from CZ-FA and SX-FA was 45 MPa and 15 MPa respectively when cured at 60 ℃ and delayed for 14 d. However, after 90 days' delay, the compressive strength of both the samples is almost the same, up to 80 MPa. Nearly 20% volume shrinkage of the samples made from SX-FA was much higher than that made from CZ-FA, which was almost zero. XRD, SEM/EDS and FT-IR were used to analyze the main reason of the differences. The properties of two types of fly ash geopolymers made from class F fly ashes produced in wet bottom and dry bottom boilers were investigated in the present study. The source material used in the geopolymer concrete was activated with sodium hydroxide and sodium silicate solution. The results revealed that the geopolymer produced with wet bottom boiler fly ash (CZ-FA)hardened quickly, and had higher early-age strength and lower shrinkage than the geopolymer produced with dry bottom boiler fly ash (SX-FA). The compressive strength of the two geopolymers made from CZ-FA and SX-FA was 45 MPa and 15 MPa respectively when cured at 60℃ and delayed for 14 d. However, after 90 days' delay, the compressive strength of both the samples is almost the same, up to 80 MPa. Nearly 20% volume shrinkage of the samples made from SX-FA was much higher than that made from CZ-FA, which was almost zero. XRD, SEM/EDS and FT-IR were used to analyze the main reason of the differences.
出处 《Transactions of Tianjin University》 EI CAS 2016年第3期261-267,共7页 天津大学学报(英文版)
关键词 GEOPOLYMER class F fly ash CALCIUM compressive strength 聚合物性能 粉煤灰 液态排渣锅炉 聚合物混凝土 抗压强度 硅酸钠溶液 体积收缩率 MPa
  • 相关文献

参考文献2

二级参考文献7

  • 1杨南如.碱胶凝材料形成的物理化学基础(Ⅰ)[J].硅酸盐学报,1996,24(2):209-215. 被引量:149
  • 2ROY D M. Alkali-activated cements: opportunities and challenges [J]. Cem Concr Res, 1999(29): 249–254.
  • 3PURDON A O. The action of alkalis on blast furnace slag [J]. J Soc Chem Ind, 1940, 59: 191-202.
  • 4Glukhovshy V D. Soil silicates, Their properties, technology and manufacturing and fields of application[D]. Kiev: Kiev Civil Engineering Institute, 1965.
  • 5DAV1DOVITS J. Geopolymers: inorganic polymeric new materials [J]. Therm Anal, 1991, 37(8): 1633-1656.
  • 6Fernández-Jiménez A, Palomo A. Composition and microstructure of alkali activated fly ash binder: Effect of the activator [J]. Cem Concr Res, 2005, 35(10): 1984–1992.
  • 7S. Detphan,P. Chindaprasirt.Preparation of fly ash and rice husk ash geopolymer[J].International Journal of Minerals,Metallurgy and Materials,2009,16(6):720-726. 被引量:5

共引文献22

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部