期刊文献+

Effects of binder strength and aggregate size on the compressive strength and void ratio of porous concrete 被引量:23

Effects of binder strength and aggregate size on the compressive strength and void ratio of porous concrete
在线阅读 下载PDF
导出
摘要 To test the influence of binder strength, porous concretes with 4 binder strengths between 30.0-135.0 MPa and 5 void ratios between 15%-35% were tested. The results indicated that for the same aggregate, the rates of strength reduction due to the increases in void ratio were the same for binders with different strengths. To study the influence of aggregate size, 3 single size aggregates with nominal sizes of 5.0, 13.0 and 20.0 mm (Nos. 7, 6 and 5 according to JIS A 5001) were used to make porous concrete. The strengths of porous concrete are found to be dependent on aggregate size. The rate of strength reduction of porous concrete with small aggregate size is found to be higher than that with larger aggregate size. At the same void ratio, the strength of porous concrete with large aggregate is larger than that with small aggregate. The general equations for porous concrete are related to compressive strength and void ratio for different binder strengths and aggregate sizes. To test the influence of binder strength, porous concretes with 4 binder strengths between 30.0-135.0 MPa and 5 void ratios between 15%-35% were tested. The results indicated that for the same aggregate, the rates of strength reduction due to the increases in void ratio were the same for binders with different strengths. To study the influence of aggregate size, 3 single size aggregates with nominal sizes of 5.0, 13.0 and 20.0 mm (Nos. 7, 6 and 5 according to JIS A 5001) were used to make porous concrete. The strengths of porous concrete are found to be dependent on aggregate size. The rate of strength reduction of porous concrete with small aggregate size is found to be higher than that with larger aggregate size. At the same void ratio, the strength of porous concrete with large aggregate is larger than that with small aggregate. The general equations for porous concrete are related to compressive strength and void ratio for different binder strengths and aggregate sizes.
出处 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2009年第6期714-719,共6页 矿物冶金与材料学报(英文版)
关键词 cement paste porous concrete compressive strength void ratio cement paste porous concrete compressive strength void ratio
作者简介 Corresponding author: T. Chareerat, E-mail: fsetkc@csc.ku.ac.th
  • 相关文献

参考文献10

  • 1M. Tamai.Properties of no-fines concrete with super-plasticizer[].Proceedings of Pacific Concrete Conference.1988
  • 2H. Fujiwara,R. Tomita,T. Okamoto,A. Dozono,A. Okabe.Properties of High-strength Porous Concrete[].ACI SP.1998
  • 3P. Chindaprasirt,S. Hatanaka,T. Chareerat,N. Mishima,Y.Yuasa.Cement paste characteristics and porous concrete properties[].Constr Build Mater.2008
  • 4Japanese Standards Association.Crushed Stone for Road Construction. JIS A 5001-1995 . 2008
  • 5Japanese Standards Association.Physical Testing Methods for Cements (Chaptev11 Flow Test). JIS R 5201-1997 . 2007
  • 6M. Kunieda,M. Tamai,H. Muzuguchi,S. Hatanaka,H. Katahira,T. Nakazawa,K. Yanagibashi.Report of the JCI Committee on Design, Construction and Recent Application of Porous Concrete[]..2003
  • 7Ryshkewitch E.Compression strength of porous sintered alumina and zirconia[].Journal of the American Ceramic Society.1953
  • 8YANAGIBASHI K,YONEZAWA.Properties and performance of greenconcrete. Recent Advances in Concrete Technology.SP.179-9 .
  • 9Duckworth W.H.Discussion of Ryshkewitch paper[].Journal of the American Ceramic Society.1953
  • 10.Standard test method for compressive strength of cylindrical concrete specimens[].ASTM C.2001

同被引文献224

引证文献23

二级引证文献215

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