Structural properties and mechanical responses of geopolymer pore models under chloride exposure: Molecular dynamics simulation

被引:1
作者
Wang, Tongfang [1 ]
Jiang, Biao [1 ]
Guo, Tong [1 ]
Tu, Yongming [1 ,2 ]
Wang, Chao [2 ]
Sas, Gabriel [2 ]
机构
[1] Southeast Univ, Sch Civil Engn, Key Lab Concrete & Prestressed Concrete Struct, Minist Educ,Natl Engn Res Ctr Prestressing Technol, Nanjing 211189, Peoples R China
[2] Lulea Univ Technol, Div Struct & Fire Engn, Dept Civil Environm & Nat Resources Engn, SE-97187 Lulea, Sweden
基金
中国国家自然科学基金;
关键词
Chlorine salt erosion; Geopolymer; Pore model; Molecular dynamics; REACTIVE FORCE-FIELD; FLY ASH-GEOPOLYMER; SODIUM; WATER; IONS; DIFFUSION; INTERPLAY; STRENGTH; HYDRATE; PASTE;
D O I
10.1016/j.jobe.2024.110651
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Geopolymers are aluminosilicate materials and are an environmentally friendly alternative to Portland cement. However, the presence of nanoscale gel pores in geopolymers can affect their structural properties. At the molecular level, the main component of the geopolymer is sodium aluminosilicate hydrate (NASH). Therefore, this study uses molecular dynamics simulations to investigate the impact of various NaCl concentrations on NASH pore structures, revealing significant ion interaction mechanisms. The results showed that as the NaCl concentration increased, the adsorption rate of Na+ ions on the NASH surface increased and Cl ions diffused together with the Na+ ions. Besides, the presence of NaCl had little effect on the elastic modulus and ultimate strength of NASH, but the ability of the model to resist deformation varied with different degrees of hydroxylation in the model. This article offers a nanoscopic explanation of geopolymer performance in a chloride environment, facilitating enhancements in the optimal design of materials.
引用
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页数:13
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