4.7 Review

A review on recent advances in the fabrication and evaluation of superhydrophobic concrete

期刊

COMPOSITES PART B-ENGINEERING
卷 237, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.compositesb.2022.109867

关键词

Superhydrophobic concrete; Surface; bulk modification; Chemical attack resistance; Freeze-thaw resistance; Durability

资金

  1. National Science Fund for Distinguished Young Scholars, National Natural Science Foundation of China (NSFC) [51825203]
  2. Jiangsu Province Shuangchuang (Innovation and Entrepreneurship) Talent Program [JSSCBS20210067]
  3. State Key Laboratory of High Performance Civil Engineering Materials Open Fund [2021CEM002]

向作者/读者索取更多资源

Water penetration can lead to severe deterioration and failure of concrete structures, but superhydrophobic concrete materials have gained considerable attention for their unique waterproofing properties. This review examines the strategies for constructing superhydrophobic concrete, discusses the impact on mechanical properties, and reviews the evaluation criteria for durability performance. The remaining challenges in fabrication and application of high-performance superhydrophobic concrete are also addressed.
Water penetration can cause severe performance deterioration and even failure of concrete constructions through various degradation mechanisms, such as chemical erosion, dry-wet alternations, carbonation, freeze-thaw cy-cles, etc., which may result in safety concerns and tremendous economic loss. To address these issues, super-hydrophobic concrete materials in the form of coating layer or monolith have received considerable attention in the past decade. In this review, the basic wettability models with the specific case of concrete are presented at first. Then, the reported advanced strategies for constructing superhydrophobic concrete are reviewed and categorized into superhydrophobic surface and bulk modification, and the advantages/disadvantages of the two distinct strategies are summarized. Besides, as concrete is the most important load-bearing component in con-struction, the influence of superhydrophobic modification on the mechanical properties of concrete is discussed. In addition, the commonly used durability performance evaluation criteria for superhydrophobic concrete ma-terials, including water impermeability, corrosion resistance, anti-icing ability/freeze-thaw resistance, and ul-traviolet (UV) resistance are comprehensively reviewed. Finally, the remaining challenges in the fabrication and application of high-performance superhydrophobic concrete and prospective solutions for addressing these problems are presented.

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