Study on Preparation and Strengthening Mechanism of New Surface Treatment Agent of Concrete at Multi-Scale

34 Pages Posted: 9 Jun 2022

See all articles by Yu Wang

Yu Wang

Nanjing Forestry University

Wenhua Zhang

Nanjing Forestry University

Peipei Wu

Nanjing Forestry University

Yilin Pi

Nanjing Forestry University

Yunsheng Zhang

Southeast University

Abstract

Concrete is susceptible to external erosion during service, the life of which was thus shortened due to the deterioration from the surface to the inside. In this study, the concrete surface treatment agent at multi-scale was innovatively proposed, which compounded of nano-silica sol-gel, micron-scale lithium silicate and sodium silicate. The physical properties and mechanical properties were investigated. Moreover, the mechanism of the new surface treatment agent was revealed in terms of pore structure and hydration products by XRD, TG, NMR, iMicro, and SEM. The results show that the Mohs hardness, flexural strength, and hydration degree are increased (by 260%, 78.7%, 12.1%), and porosity is reduced by 22% after the surface treatment. The mechanism is that pores can be repaired by particles of multi-scale. In addition, pretreatment of Ca2+ can further promote the pozzolanic reaction. The extra of EDTA-2Na can promote not only the pozzolanic reaction but also secondary hydration reaction.

Keywords: Surface treatment agent, Hydration products, pore structure, C-S-H gel

Suggested Citation

Wang, Yu and Zhang, Wenhua and Wu, Peipei and Pi, Yilin and Zhang, Yunsheng, Study on Preparation and Strengthening Mechanism of New Surface Treatment Agent of Concrete at Multi-Scale. Available at SSRN: https://ssrn.com/abstract=4132113 or http://dx.doi.org/10.2139/ssrn.4132113

Yu Wang

Nanjing Forestry University ( email )

159 Longpan Rd
Nanjing, 210037
China

Wenhua Zhang (Contact Author)

Nanjing Forestry University ( email )

159 Longpan Rd
Nanjing, 210037
China

Peipei Wu

Nanjing Forestry University ( email )

159 Longpan Rd
Nanjing, 210037
China

Yilin Pi

Nanjing Forestry University ( email )

159 Longpan Rd
Nanjing, 210037
China

Yunsheng Zhang

Southeast University ( email )

Banani, Dhaka, Bangladesh
Dhaka
Bangladesh

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