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FH-10100M is a branched polyether polyol engineered for integration with isocyanates, serving as a reactive component in 2-component polyurethane coatings. Its molecular structure supports the formation of coatings with high cross-linked density, a key factor in enhancing chemical resistance. This product is designed to meet the demands of industrial applications requiring durable, reactive coating solutions, leveraging its unique chemical properties to complement isocyanate-based systems.
It contributes to the improvement of the glass transition temperature (Tg), a critical parameter influencing coating flexibility and thermal stability.
The product supports the formation of high cross-linking density in the final coating, which enhances structural integrity.
Its hydrophilic characteristics add versatility in formulations, adapting to various substrate and environmental conditions.
Notably, it plays a role in enhancing the chemical resistance of the coating, making it suitable for environments exposed to corrosive substances.
Bio-based: Derived from plant-based raw materials, reducing reliance on fossil resources.
100% system compatibility: Integrates seamlessly into existing polyurethane coating formulations without compromising stability.
Solvent-free: Eliminates volatile organic compounds (VOCs) associated with solvents, supporting eco-friendly coating practices.
Hydrophilic properties: Enhances adhesion and performance in humid or moisture-exposed environments.
High cross-link density: Contributes to the coating's durability and resistance to mechanical stress.
Strong chemical resistance: Suitable for applications where exposure to chemicals, oils, or solvents is common.
The following parameters define the physical and chemical characteristics of FH-10100M:
Property | Specification |
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Physical form | Medium viscous, clear liquid |
Water content | ≤ 0.1% |
Acid number | ≤ 1.0 mg KOH/g |
Hydroxyl number | 810 – 910 mg KOH/g |
Viscosity (25 °C) | 5,400 – 6,500 mPa·s |
Density (25 °C) | 1.08 – 1.12 g/cm³ |
Color (Pt/Co, APHA) | ≤ 150 |