Influence of steam curing on compressive fatigue performance of high-volume slag concrete

被引:7
作者
Yan, Xiancui [1 ]
Jiang, Linhua [1 ,2 ]
Xu, Ning [3 ]
Song, Zijian [2 ]
Chen, Yunjie [2 ]
机构
[1] Hohai Univ, Coll Civil & Transportat Engn, Nanjing, Jiangsu, Peoples R China
[2] Hohai Univ, Coll Mech & Mat, Nanjing, Jiangsu, Peoples R China
[3] Nanjing Hydraul Res Inst, Nanjing, Jiangsu, Peoples R China
基金
中国国家自然科学基金;
关键词
cement; cementitious materials; curing; fatigue; POROUS CEMENTITIOUS MATERIALS; EQUIVALENT-CIRCUIT MODEL; AC-IMPEDANCE TECHNIQUES; BLAST-FURNACE SLAG; SPECTROSCOPY; STRENGTH; TEMPERATURE; DURABILITY; DIFFUSION; HYDRATION;
D O I
10.1680/jmacr.18.00014
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Compressive fatigue generally causes permanent internal damage to concrete structures. This paper presents an experimental study to evaluate the influences of steam curing and slag replacement on the compressive fatigue performance of concrete. After 10 000 cycles loading at stresses of 0.5, 0.6 and 0.7, the residual compressive strength of concrete was measured to investigate the mechanical property after fatigue. The fatigue damage was determined using two non-destructive techniques: the ultrasonic pulse velocity and electrochemical impedance methods. In the electrochemical impedance method, the R-1 and n parameters fitted from the R-e(CR1(QR(2))) circuit model were used to characterise the pore structure. The results showed that the residual compressive strength of standard-cured concrete without slag replacement decreased with increasing stress. The compressive fatigue damage of specimens after steam curing was greater than that after standard curing. In steam curing conditions, the fatigue damage of concrete increased with increasing slag replacement. The results indicated that electrochemical impedance is an appropriate method to evaluate compressive fatigue damage.
引用
收藏
页码:773 / 780
页数:8
相关论文
共 38 条
[1]   Effects of curing conditions on properties of concrete using slag replacement [J].
Aldea, CM ;
Young, F ;
Wang, KJ ;
Shah, SP .
CEMENT AND CONCRETE RESEARCH, 2000, 30 (03) :465-472
[2]   Fatigue strength and failure probability of concrete made with RCA [J].
Arora, Sumit ;
Singh, Surinder Pal .
MAGAZINE OF CONCRETE RESEARCH, 2017, 69 (02) :55-67
[3]   Effects of steam curing on strength and porous structure of concrete with low water/binder ratio [J].
Ba, Ming-fang ;
Qian, Chun-xiang ;
Guo, Xin-jun ;
Han, Xiang-yang .
CONSTRUCTION AND BUILDING MATERIALS, 2011, 25 (01) :123-128
[4]   Effect of elevated temperature curing on properties of alkali-activated slag concrete [J].
Bakharev, T ;
Sanjayan, JG ;
Cheng, YB .
CEMENT AND CONCRETE RESEARCH, 1999, 29 (10) :1619-1625
[5]   Influence of the long term curing temperature on the hydration of alkaline binders of blast furnace slag-metakaolin [J].
Burciaga-Diaz, Oswaldo ;
Gomez-Zamorano, Lauren Y. ;
Ivan Escalante-Garcia, Jose .
CONSTRUCTION AND BUILDING MATERIALS, 2016, 113 :917-926
[6]   Compressive fatigue performance of fiber-reinforced lightweight concrete with high-volume supplementary cementitious materials [J].
Choi, Se-Jin ;
Mun, Jae-Sung ;
Yang, Keun-Hyeok ;
Kim, Si-Jun .
CEMENT & CONCRETE COMPOSITES, 2016, 73 :89-97
[7]   The use of electrical impedance spectroscopy for monitoring the hydration products of Portland cement mortars with high percentage of pozzolans [J].
Cruz, J. M. ;
Fita, I. C. ;
Soriano, L. ;
Paya, J. ;
Borrachero, M. V. .
CEMENT AND CONCRETE RESEARCH, 2013, 50 :51-61
[8]   Electrochemical impedance measurement and modeling analysis of the carbonation behavior for cementititous materials [J].
Dong, Bi-qin ;
Qiu, Qi-wen ;
Xiang, Jia-qi ;
Huang, Can-jie ;
Xing, Feng ;
Han, Ning-xu ;
Lu, You-yuan .
CONSTRUCTION AND BUILDING MATERIALS, 2014, 54 :558-565
[9]  
Dongfu Zhao, 2014, Applied Mechanics and Materials, V584-586, P944, DOI 10.4028/www.scientific.net/AMM.584-586.944
[10]   Chloride penetration into concrete damaged by uniaxial tensile fatigue loading [J].
Fu, Chuanqing ;
Ye, Hailong ;
Jin, Xianyu ;
Yan, Dongming ;
Jin, Nanguo ;
Peng, Zhaoxiong .
CONSTRUCTION AND BUILDING MATERIALS, 2016, 125 :714-723