Novel 3d Superhydrophobic Lightweight Foam Concrete Designed Via In-Situ Foaming and Self-Assembled Silicone Microfilms

40 Pages Posted: 9 Aug 2023

See all articles by Xuesen lv

Xuesen lv

Hong Kong Polytechnic University

Wenxiang Cao

Hong Kong Polytechnic University

Marcus H. N. Yio

Imperial College London

Jian-Xin Lu

Hong Kong Polytechnic University

Chi-sun Poon

Hong Kong Polytechnic University

Abstract

The poor durability of lightweight foam concrete, stemming from its highly porous and hydrophilic nature, is a major limitation for its wider application. Designing a superhydrophobic structure would be an effective approach to improving the durability of foam concrete. In this study, a facile strategy was developed to produce 3D superhydrophobic foam concrete using PMHS (Poly(methyl hydrogen)siloxane) by means of in-situ foaming and low surface energy characteristic. Results show that PMHS could be hydrolyzed and released hydrogen gas by reacting with the hydration product of Ca(OH)2. The resulting self-foaming lightweight concrete exhibits controllable average pore sizes ranging from 229 to 430 μm, with a density between 610 and 1177 kg/m3. The hydrolyzed PMHS self-assembles on the foam films, and the micrometer pores are carried with gel-like silicone microfilms through PMHS liquid-solid phase transition after 90℃ steam curing. With the synergetic effect of the dense silicone films and the particular pore frame, the superhydrophobic foam concrete demonstrates good fundamental properties, including thermal insulation and sound absorption, mechanical robustness, chemical durability, and weathering resistance. This study provides a practical solution for developing superhydrophobic lightweight concrete, which substantially enhances the durability of porous cement-based materials.

Keywords: Superhydrophobic lightweight concrete, Foam concrete, In-situ foaming, Inorganic-organic hybrid, Pore modification

Suggested Citation

lv, Xuesen and Cao, Wenxiang and Yio, Marcus H. N. and Lu, Jian-Xin and Poon, Chi-sun, Novel 3d Superhydrophobic Lightweight Foam Concrete Designed Via In-Situ Foaming and Self-Assembled Silicone Microfilms. Available at SSRN: https://ssrn.com/abstract=4536101 or http://dx.doi.org/10.2139/ssrn.4536101

Xuesen Lv (Contact Author)

Hong Kong Polytechnic University ( email )

Hung Hom
Kowloon
Hong Kong

Wenxiang Cao

Hong Kong Polytechnic University ( email )

Hung Hom
Kowloon
Hong Kong

Marcus H. N. Yio

Imperial College London ( email )

South Kensington Campus
Exhibition Road
London, SW7 2AZ
United Kingdom

Jian-Xin Lu

Hong Kong Polytechnic University ( email )

Hung Hom
Kowloon
Hong Kong

Chi-sun Poon

Hong Kong Polytechnic University ( email )

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