LG Chem LG MMA BA141 is a 100% solid acrylic bead resin, designed for multi-scenario protective coatings, gravure printing inks and plastic coatings. This beaded powder resin features balanced hardness and flexibility, can be flexibly used with various solvents, with excellent indoor durability and oil/solvent resistance, forming transparent and tough film, outstanding adhesion to concrete and other substrates
Balanced hardness-flexibility - Precise balance between hardness and flexibility, avoiding coating brittleness or collapse, suitable for protecting substrates with complex deformation.
Wide system compatibility - Can be flexibly combined with various solvents, compatible with concrete, plastic and other substrates and additives, with high formulation flexibility.
Chemical-resistant protection advantage - Excellent gasoline and petroleum resistance, providing long-term anti-pollution protection for substrates and extending product service life.
Processing advantages - Beaded form for easy addition and dissolution, good construction leveling, improving coating and production efficiency, simplifying preparation process.
Concrete transparent coatings: Protection for indoor and outdoor concrete floors and driveways, oil-resistant and anti-pollution, improving floor durability and appearance.
General industrial coatings: Coating for factory and warehouse walls and floors, balanced hardness-flexibility suitable for frequent treading or slight collision scenarios.
Gravure printing inks: Printing on plastic films and paper packaging, firm adhesion and good weather resistance, suitable for general printing needs.
Plastic surface coatings: Protective decoration for ABS, PS and other plastic parts, improving surface texture and scratch resistance, suitable for daily necessities shells.
| Resin Appearance | Solid beads |
| Chemical Type | 100% solid acrylic resin (PMMA) |
| Solid Content (wt%) | 100 |
| Molecular Weight (Mw) | 100,000 |
| Specific Gravity (25℃, kg/liter) | 1.12 |
| Brookfield Viscosity (23℃, 40% solution in MEK, cP) | 350 |
| Glass Transition Temperature (Tg, ℃) | 58 |
| Acid Value (mg KOH/g) | 3 |
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