IOTA 9283 silazane polymer overcomes the challenges of multi-material protection, and the transparent anti-fouling coating is implemented in various manufacturing scenarios.
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IOTA 9283 silazane polymer overcomes the challenges of multi-material protection, and the transparent anti-fouling coating is implemented in various manufacturing scenarios.
1. Fluorine-modified silazane polymer, balancing light transmittance and long-term hydrophobicity
IOTA 9283 belongs to fluorine-modified organic silazane polymer. Relying on the Si-NH-Si active structure and incorporating fluorine groups, the cured coating maintains high light transmittance, with a transmittance exceeding 95%, and does not cover the appearance of the substrate. The hydrophobic contact angle of the coating can reach 110° to 120°, allowing water droplets to roll off quickly, achieving anti-fouling and anti-fingerprint effects. The material has low viscosity, suitable for various construction methods such as spraying, immersion coating, and brushing, and is compatible with various substrates such as metal, glass, PC, PMMA plastic, and ceramics, addressing the pain points of many protective coatings that can only be used on a single substrate.
2. Ambient temperature curing process, reducing production line energy consumption costs
Most traditional inorganic protective coatings require high-temperature baking for curing, which has high requirements for production line equipment and is prone to causing plastic and precision parts to deform due to heat. IOTA 9283 can achieve ambient temperature curing, relying on water vapor in the air for hydrolysis oxidation cross-linking, without the need for a heating process, significantly reducing energy consumption in industrial production. Adding an appropriate catalyst can also regulate the curing speed, suitable for continuous production lines or small-batch manual samples, flexibly adapting to different production modes of enterprises. The three-dimensional cross-linked network during curing brings excellent antioxidant and corrosion resistance properties.
3. Customer frequent technical questions and answers, directly addressing selection doubts
Q: How is the thermal stability of this coating? Will the hydrophobic property fail after high-temperature treatment?
A: After short-term treatment at 350°C, the hydrophobic contact angle of the coating still remains above 109°, capable of coping with short-term high-temperature conditions; for long-term continuous ultra-high temperature environments, it is recommended to conduct sample verification in advance.
Q: When applying on plastic substrates, will there be problems such as substrate adhesion or corrosion?
A: The formula system is compatible with PC, PMMA, etc., and before formal production, it is recommended to conduct small sample tests on the customer's own substrates to confirm compatibility and avoid substrate corrosion risks.
4. Expanding high-end manufacturing applications, helping to upgrade the surface of precision components
Currently, IOTA 9283 silazane polymer is gradually implemented in optical glass, new energy components, decorative panels, and precision mold protection directions. In addition to being a surface anti-fouling and hydrophobic coating, it can also be used for composite material modification to enhance the weather resistance and flame retardancy of the material. Relying on excellent substrate adhesion, the scratch test of metal substrates can reach 0 level, and the coating is not prone to peeling and falling off, extending the service life of the workpiece, providing a new surface protection solution for the precision manufacturing industry.