Durability development of lightweight and high-strength engineered cementitious composites subject to combined sulfate-chloride attack under freeze-thaw cycles

被引:19
作者
Gou, Hongxiang [1 ]
Sofi, Massoud [1 ]
Zhang, Zipeng [1 ]
Zhu, Hongbo [2 ]
Zhu, Mintao [3 ]
Mendis, Priyan [1 ]
机构
[1] Univ Melbourne, Dept Infrastruct Engn, Parkville, Vic, Australia
[2] Tongji Univ, Key Lab Adv Civil Engn Mat, Minist Educ, Shanghai, Peoples R China
[3] Shanghai Construct Bldg Mat Technol Grp Co Ltd, Shanghai, Peoples R China
关键词
Lightweight high-strength ECC; Sulfate-chloride attack; Freeze-thaw cycles; Durability; Damage mechanism; CONCRETE; RESISTANCE; AGGREGATE; CRACKING; ECC; MICROCRACKS; PERFORMANCE; EXPANSION; FIBERS;
D O I
10.1016/j.conbuildmat.2023.133659
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
A novel lightweight high-strength engineered cementitious composite (LECC) was developed, and its mechanical property changes and the resultant durability evolution under the triple coupling factors of chloride attack, sulfate attack, and freeze-thaw cycles were studied. The results indicate that the salt solutions can accelerate the failure of LECC under freeze-thaw cycles. Salt solutions accelerated the tensile properties degradation of LECCs, and the deterioration degree was LECC-S (sulfate) > LECC-CS (chloride-sulfate) > LECC-C (chloride). The influence degree of salt solutions on mass loss was LECC-CS > LECC-C > LECC-S, while their influence on relative dynamic elastic modulus was LECC-S > LECC-CS > LECC-C. The surface spalling and internal structure destruction of LECC after salt freezing provided a favorable channel for CO2 penetration in the environment and the external sulfate-chloride environment under low temperature offered highly suitable conditions for the formation of expansive thaumasite. The combined physical and chemical attacks of sulfate promoted chloride diffusion, but chloride ion delayed sulfate's diffusion and expansion reaction. This study more comprehensively revealed the durability development of LECC in some abominable environments and provided data support for the engineering application of LECC.
引用
收藏
页数:17
相关论文
共 50 条
  • [1] Al-Amoudi O.S. B., 1995, CONSTR BUILD MATER, V9, P25
  • [2] [Anonymous], 2008, Concrete Engineering, P82
  • [3] [Anonymous], B. Standards, Products And Systems For The Protection And Repair Of Concrete Structures-Test Methods-Determination Of Chloride Content In Hardened Concrete
  • [4] [Anonymous], 2019, G.T. 50081
  • [5] [Anonymous], 2009, G.T. 50082
  • [6] Durability of self-consolidating concrete to sulfate attack under combined cyclic environments and flexural loading
    Bassuoni, M. T.
    Nehdi, M. L.
    [J]. CEMENT AND CONCRETE RESEARCH, 2009, 39 (03) : 206 - 226
  • [7] Degradation progress of concrete subject to combined sulfate-chloride attack under drying-wetting cycles and flexural loading
    Chen, Fei
    Gao, Jianming
    Qi, Bing
    Shen, Daman
    Li, Luyang
    [J]. CONSTRUCTION AND BUILDING MATERIALS, 2017, 151 : 164 - 171
  • [8] Comparing chloride ingress from seawater and NaCl solution in Portland cement mortar
    De Weerdt, K.
    Lothenbach, B.
    Geiker, M. R.
    [J]. CEMENT AND CONCRETE RESEARCH, 2019, 115 : 80 - 89
  • [9] The stability of bound chlorides in cement paste with sulfate attack
    Geng, Jian
    Easterbrook, Dave
    Li, Long-yuan
    Mo, Li-wei
    [J]. CEMENT AND CONCRETE RESEARCH, 2015, 68 : 211 - 222
  • [10] Effect of pre-saturated lightweight sand on material properties of eco-friendly lightweight cementitious composites
    Gou, Hongxiang
    Sofi, Massoud
    Ozyurt, Nilufer
    Zhou, Zhiyuan
    Zhu, Hongbo
    Mendis, Priyan
    [J]. JOURNAL OF SUSTAINABLE CEMENT-BASED MATERIALS, 2023, 12 (05) : 561 - 579