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May 27, 2026Polymers0 citationsOpen Access

Development and Research of Anti-Corrosion Polymer Coatings with Microdefect Blocking Effect

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STS. A. TyurinaVDVictor DeminVSVyacheslav Shchelkov

Key Points

  • This study aims to develop polymer coatings that effectively block microdefects and enhance corrosion resistance in materials exposed to harsh environments.
  • Developed epoxy resin-based coatings reinforced with zinc and corrosion inhibitors.
  • Conducted accelerated corrosion tests in a 3% NaCl solution to evaluate performance.
  • Examined microstructure using scanning electron microscopy (SEM) and optical microscopy.
  • Coatings with activated Al2O3 + HEDP microcapsules showed excellent corrosion resistance in 3% NaCl solution.
  • Unmodified zinc-filled coatings exhibited the lowest resistance to corrosion and microdefect blocking.
  • Reinforced coatings effectively filled pores, enhancing their protective capabilities.

Abstract

Corrosion of materials is a global issue affecting various industries. It leads to a gradual decline in the durability and reliability of materials, resulting in significant economic losses and posing serious risks to human health. To address the challenge of enhancing reliability and durability when materials are exposed to aggressive environments, this study developed new polymer protective coatings. These coatings involve reinforcing an epoxy resin-based polymer matrix with zinc and microencapsulated corrosion inhibitors (activated Al2O3 + HEDP; activated Al2O3 + PPA; activated Al2O3 + ATMP). These microscopic containers encapsulate the corrosion inhibitors. The microstructure of the microcapsules was examined using scanning electron microscopy (SEM) and optical microscopy. Accelerated corrosion tests were performed on the reinforced modified coatings. Coatings reinforced with activated Al2O3 + HEDP microcapsules demonstrated excellent corrosion resistance in a 3% NaCl solution. In contrast, samples coated with unmodified zinc-filled coatings and coatings modified with Al2O3 + PPA exhibited the lowest resistance in a 3% NaCl solution. The study also investigated the microdefect-blocking effect in reinforced coatings, which is achieved by filling the pores of the polymer coating with products formed from inhibitor–metal interactions.

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Cite This Study

Tyurina et al. (2026) studied this question.

synapsesocial.com/papers/6a168b430c924ddd1bd5a2b2https://doi.org/10.3390/polym18111292
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