A model for predicting time-dependent chloride binding capacity of cement-fly ash cementitious system

被引:44
作者
T. Sumranwanich
S. Tangtermsirikul
机构
[1] Thammasat University,Sirindhorn International Institute of Technology
关键词
Cement Paste; Chloride Content; Pore Solution; Pozzolanic Reaction; Chloride Binding;
D O I
10.1007/BF02479635
中图分类号
学科分类号
摘要
A model for predicting time-dependent chloride binding capacity of cement-fly ash cementitious systems was proposed. The proposed model took into account both chemical binding and physical binding. Chemical binding was considered to depend on the amount of unhydrated aluminated and aluminoferrite phases while physical binding depended upon the quantity of hydrated and pozzolanic products. The concept of time-dependent chloride binding capacity was introduced in the model with the consideration of curing time and chloride exposure period. The chloride binding of cement pastes and cement-fly ash pastes under different curing times and chloride exposure periods were tested. Three types of cement and two types of fly ash were used. From the experimental results, time-dependent behavior of chloride binding capacity was observed. At the same chloride exposure period, pastes with longer curing time prior to chloride exposure bound less chloride than those exposed with shorter curing time. Longer exposure period of paste resulted in larger chloride binding capacity. The analytical results from the model were verified with the experimental results from the authors and other researchers. The verification showed that the proposed model was satisfactory for predicting the chloride binding capacity of various cement and cement-fly ash cementitious systems.
引用
收藏
页码:387 / 396
页数:9
相关论文
共 42 条
[1]  
Arya C.(1990)Factors influencing chloride-binding in concrete Cem. Con. Res. 20 291-300
[2]  
Buenfeld N.R.(1984)Free and combined chloride in hydrating cement and cement compounds Mater. Struct. 17 285-289
[3]  
Newman J.B.(1991)Effect of cement composition on chloride binding and corrosion of reinforcing steel in concrete Cem. Con. Res. 21 777-794
[4]  
Ramachadran S.(1995)The binding of chloride ions by sulphate resistant Portland cement Cem. Con. Res. 25 581-592
[5]  
Seeley R.C.(2001)Chloride ion binding capacity of aluminoferrites Cem. Con. Res. 31 577-588
[6]  
Polomark G.M.(1996)Chloride Binding in GGBS concrete Cem. Con. Res. 26 1767-1773
[7]  
Rasheeduzzafar E.S.(1994)Influence of sulfates on chloride binding in cements Cem. Con. Res. 24 8-24
[8]  
Hussain S.S.(1997)The influence of sulphates on chloride binding and pore solution chemistry Cem. Con. Res. 27 1841-1850
[9]  
Al-Saadoun A.K.(2000)Influence of cement constitution and temperature on chloride binding in cement paste Advances in Cement Research 12 57-64
[10]  
Suryavanshi J.D.(1993)Chloride binding capacity and binding isotherms of OPC pastes and mortars Cem. Con. Res. 23 247-253