Abstract

The information about the composition of the anti-icing coating is provided. The use of acrylic resin A-01 and DEGALAN®, highly chlorinated polyethylene resin HCPE and silicone resin SILRES® MSE 100 as a binder is considered. The regularities of changes in viscosity of the composition depending on volume content of the filler – Aerosil brand R 972 are revealed. It is found that the viscosity increase is insignificant when filling in the range 0<φ<0.012. With further filling (φ>0,012) there is a significant change in the ratio of the volume and membranous phases of the matrix, there is a sharp increase in the viscosity of the composition. The optimal volumetric composition of the filler is established for each type of the resin. It is revealed that the interaction in the filler-filler system prevails over the interaction in the filler-binder system. In assessing the hydrophobic properties, it is found that the coatings have a high contact angle (more than 150°), and the roll-off angle does not exceed 10°, which confirms the presence of superhydrophobicity and assumes anti-icing properties of the coatings. The adhesion of the coating to the substrate estimated by the lattice incision method on the mortar and metal substrates is 1 point. Smooth and clear cuts without chipping and cracking are marked at 4x magnification

Highlights

  • The regularities of changes in viscosity of the composition depending on volume content of the filler – Aerosil brand R 972 are revealed

  • In assessing the hydrophobic properties, it is found that the coatings have a high contact angle, and the roll-off angle does not exceed 10°, which confirms the presence of superhydrophobicity and assumes anti-icing properties of the coatings

  • The adhesion of the coating to the substrate estimated by the lattice incision method on the mortar and metal substrates is 1 point

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Summary

РАЗРАБОТКА СОСТАВА АНТИОБЛЕДЕНИТЕЛЬНОГО ПОКРЫТИЯ

Установлено, что при наполнении в интервале 0

Покрытие на основе смолы
БИБЛИОГРАФИЧЕСКИЙ СПИСОК
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