Influence of Polymers on the Performance and Protective Effect of Cement-Based Coating Materials
Yihao Yin, Yingjun Mei

TL;DR
This paper studies how adding polymers and other materials improves the performance and durability of cement-based coatings used to protect concrete.
Contribution
The study introduces a polymer-modified cement coating with optimized silica fume and polymer ratios to enhance durability and bonding with concrete.
Findings
Adding 3% SBR improves concrete bonding by 42%.
6% PU coating improves frost and sulfate resistance by 31.5% and 69.6%.
12% SF + 6% PU coating shows 45% better bonding and 48% better durability than ordinary coatings.
Abstract
Traditional cementitious coating materials struggle to meet the performance criteria for protective coatings in complex environments. This study developed a polymer-modified cement-based coating material with polymer, silica fume (SF), and quartz sand (QS) as the principal admixtures. It also investigated the influence of material composition on the coating’s mechanical properties, durability, interfacial bond characteristics with concrete, and the durability enhancement of coated concrete. The results demonstrated that compared with ordinary cementitious coating material (OCCM), the interfacial bonding performance between 3% Styrene Butadiene Rubber Powder (SBR) coating material and concrete was improved by 42%; the frost resistance and sulfate erosion resistance of concrete protected by 6% polyurethane (PU) coating material were improved by 31.5% and 69.6%. The inclusion of polymers…
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Taxonomy
TopicsConcrete and Cement Materials Research · Innovative concrete reinforcement materials · Concrete Corrosion and Durability
