PRODUCTS
TY291 anti-flash rust inhibitor is formulated from a blend of organic polymers and organic compounds, providing excellent protection against flash rust on a wide range of metal substrates. It is suitable for various metal substrates, including iron, cast iron, and carbon steel. It is highly compatible with coating systems, does not affect the drying rate of the coating or its adhesion to the substrate, and enhances the coating’s rust-preventive properties.
TY251 flash rust inhibitor is formulated from a blend of various organic compounds and inorganic salts. It provides a certain level of flash rust inhibition for different substrates and is suitable for a variety of metal substrates, including iron, cast iron, and carbon steel. It offers good compatibility with coating systems and is a highly effective flash rust inhibitor that does not affect the drying rate of the coating or its adhesion to the substrate, while also improving the coating’s rust-preventive properties.
TY231 anti-flash rust inhibitor is formulated from a blend of various organic compounds, organic polymers, and inorganic salts, and provides excellent protection against flash rust on a wide range of metal substrates. It is suitable for various metal substrates, including iron, cast iron, and carbon steel. It is highly compatible with coating systems, does not affect the drying rate of the coating or its adhesion to the substrate, and enhances the coating’s rust-preventive properties.
CK-16 is a cost-effective anti-flash rust agent specially designed for water-based color steel tile coatings. As an economical solution for small-to-medium coating projects, it effectively prevents flash rust on ferrous metals while optimizing the final effect of color steel tile paints—becoming the first choice for cost-sensitive customers.
This electricity-free cooling reflective insulation coating uses an acrylic emulsion as its film-forming binder and is scientifically formulated with functional components such as nano-scale reflective fillers and glass microspheres. Relying on a unique dual-protection system consisting of a reflective layer and a barrier layer, it effectively blocks the intrusion of solar radiation heat without relying on electricity, while rapidly dissipating heat accumulated on and within the substrate. This delivers multiple benefits—including “power-free cooling, energy-saving temperature reduction, substrate protection, and long-lasting durability”—reducing cooling energy consumption at the source and meeting thermal insulation needs across various scenarios, all while offering both environmental sustainability and cost-effectiveness.