Guangzhou Eric Wei Chemical Co., Ltd.
Guangzhou Eric Wei Chemical Co., Ltd.

LX MMA BA122 Solid Acrylic Bead Resin

LX MMA BA122 is a 100% solid acrylic bead resin, designed for concrete road paints, gravure inks and protective coatings for plastic/metal surfaces. It is solid beads with glass transition temperature 60℃, molecular weight 60,000, specific gravity 1.11kg/L, 40% MEK solution viscosity 140cP, acid value 4mgKOH/g, forming film quickly after dissolution, featuring wear resistance, scratch resistance, acid and alkali resistance and high transparency

Features Of LX MMA BA122 Solid Acrylic Bead Resin

  1. All-solid high-efficiency formula - 100% solid beads, directly usable after dissolution without additional dilution steps.

  2. Wide system compatibility - Suitable for solvent-based systems, compatible with various resins, pigments and additives, with flexible formulation.

  3. Cost-effective protection - Wear-resistant, scratch-resistant and anti-stick, providing long-lasting surface protection and slip optimization at a competitive cost.

  4. Processing advantages - Easy to dissolve and add, fast film formation, improving production efficiency of coatings and inks.

Typical Applications Of LX MMA BA122 Solid Acrylic Bead Resin

  1. Concrete road paints: Road markings and lane lines, wear-resistant and anti-slip, with long-lasting color retention.

  2. Gravure inks: High-end gravure printing such as food packaging and cigarette packaging, with good film-forming property and printability.

  3. Plastic coatings: Surface coating of ABS and polystyrene, improving scratch resistance and gloss.

  4. Metal protective coatings: Anti-corrosion for water tanks, oil pumps and other components, acid and alkali resistant.

Specifications Of LX MMA BA122 Solid Acrylic Bead Resin

AppearanceSolid beads
Chemical Type100% solid acrylic resin
Solid Content (wt%)100
Molecular Weight (Mw)60,000
Specific Gravity (25℃, kg/L)1.11
40% MEK Solution Viscosity (23℃, cP)140
Glass Transition Temperature (Tg, ℃)60
Acid Value (mg KOH/g)4


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