2022
DOI: 10.3390/coatings12081162
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Study on the Improvement of Waterproof Performance of Historical Silt Sites with Silicone Waterproofing Agent

Abstract: Silt has the characteristics of obvious capillary water effect and strong water sensitivity. The flooding of the Yellow River caused the water level in Kaifeng to be high, and the damage of capillary water to the silt site of Kaifeng Zhouqiao site is increasing day by day. In order to improve the waterproof performance of the site soil, three kinds of silicone waterproof materials were selected, and the site soil was improved by internal mixing. The improvement effects of different materials were compared thro… Show more

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Cited by 6 publications
(2 citation statements)
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“…Through compaction test, strength test and permeability test, it is believed that it can significantly improve the mechanical and impermeability properties of silty sand in the Yellow flood area [12][13][14]. In conclusion, sodium methylsilicate can significantly improve the cohesion and internal friction angle of soil, and play a hydrophobic role in the dry wet cycle test [15][16][17]; Lignin fiber can form an integral spatial network structure with soil particles, effectively improving the strength of soil [18].…”
Section: Introductionmentioning
confidence: 99%
“…Through compaction test, strength test and permeability test, it is believed that it can significantly improve the mechanical and impermeability properties of silty sand in the Yellow flood area [12][13][14]. In conclusion, sodium methylsilicate can significantly improve the cohesion and internal friction angle of soil, and play a hydrophobic role in the dry wet cycle test [15][16][17]; Lignin fiber can form an integral spatial network structure with soil particles, effectively improving the strength of soil [18].…”
Section: Introductionmentioning
confidence: 99%
“…Adding a waterproofing agent can reduce the number of open pores in concrete, lower water absorption, and effectively improve the resistance to chloride ion diffusion (Xiang et al, 2021;Chen et al, 2022). Sodium methyl silicate in cementitious materials will form a water-repellent reticular film with low surface tension to block ion penetration, thus significantly improving the impermeability of the material (Li et al, 2022;Ma et al, 2022). Inorganic water repellents can generate insoluble colloids and swelling compound salt crystals inside the material to fill the pores and increase the material's density, improving the material's corrosion resistance.…”
mentioning
confidence: 99%