

In 2016, the production of organic silicon high-temperature resistant paint exceeded 800000 tons. As an important anti-corrosion paint variety, it involves improving industrial manufacturing quality and meeting market demand. It is expected that the production of high-temperature resistant paint will increase at a rate of about 4% in the new year, but the requirements for the quality and environmental protection of high-temperature resistant paint products are becoming increasingly high. The focus is on research and development:
(1) Further research on the process of high-temperature resistant paint, with a focus on solving the problem of sealing and anti swelling ribs in the primer, as well as the appearance issues such as leveling and fullness of high-temperature resistant paint; Promote the development and application of environmentally friendly high-temperature resistant coatings and key raw materials such as UV coatings, high solid PU coatings, water-based UV coatings, water-based two-component acrylic polyurethane coatings, powder coatings, etc.
(2) Transform the service model. From selling a single high-temperature resistant paint to providing integrated coating services, we value the rationality and innovation of coating processes, and are committed to providing customers with a complete set of coating solutions. Jointly develop corresponding high-temperature resistant paint coating specifications with the steel industry.
(3) Emphasize the automation application of painting processes and VOC process control. Promote automation and assembly line operations, and promote the development of production lines such as robot painting, electrostatic spraying painting, UV painting, etc. Emphasize the application of paint mist recycling and reuse systems.
(4) Breaking through the technical barriers of high-temperature resistant paint coating and drying process, enhancing universal applicability and reducing costs. Reasonable use of drying equipment is advocated in the application of solvent based wood coatings, and reasonable drying and air temperature and humidity control equipment must be equipped in the application of water-based wood coatings; Promote the development and application of advanced drying and curing equipment such as microwave, infrared (IR), UV radiation (UV-LED), etc.
(5) Talent cultivation and reserve. Pay attention to the technical and skill training of personnel in paint production plants, steel structure production plants, and other related areas regarding 500 degree high-temperature resistant paint and coating.
Organic silicon high-temperature resistant paint is an important coating. Since the industrial production of organic silicon in the 1940s, high-temperature resistant coatings formulated with its products have been widely used in high-temperature motors and electrical insulation. For example, organic silicon aluminum powder paint has achieved great success in high-temperature and anti-corrosion coatings for aircraft engines, while organic silicon ceramic glass coatings meet the requirements of higher temperature anti-corrosion. However, due to the poor mechanical properties and adhesion of organosilicon itself. Due to low wear resistance and solvent resistance, it is increasingly unable to meet the requirements of modern motors, electrical appliances, aerospace, and special media resistance, resulting in a series of heterocyclic polymers.
High temperature resistant paint generally refers to a coating that does not change color or peel off at temperatures above 200 ℃, and can still maintain appropriate physical properties. High temperature resistant powder coatings are mainly composed of high-temperature resistant resins, high-temperature resistant pigments, high-temperature resistant fillers, and special additives; Due to its high temperature resistance, it is widely used in industries such as chemical, petroleum, metallurgy, and aviation. At present, heat-resistant powder coatings are still mainly based on organic silicon powder coatings.
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