Mitsubishi Chemical BR-80 is a high-temperature baking thermoplastic acrylic resin in the BR series (Model: ETERAC 7205-TB-50), developed for automotive aluminum powder baking paint. Relying on Mitsubishi Chemical's advanced polymerization technology, it features excellent weather resistance and solvent tolerance, with outstanding dispersibility and orientation for aluminum powder. It can endow coatings with uniform and delicate metallic texture and long-lasting gloss
High-Quality Aluminum Powder Adaptability - Outstanding dispersibility and orientation of aluminum powder, ensuring uniform and long-lasting metallic luster of coatings
Superior Weather Resistance Protection - Excellent resistance to UV and atmospheric aging, not easy to lose luster or discolor during long-term outdoor use
Strong Solvent Tolerance - Resists erosion of various organic solvents, improving chemical stability and service life of coatings
Efficient High-Temperature Film Formation - Suitable for high-temperature baking process, fast film formation and dense film layer, shortening production turnover
Automotive Aluminum Powder Baking Paint - Suitable for decorative and protective coating of aluminum powder on core parts such as automotive bodies and wheels
Automotive Parts Coating - Used for the preparation of high-temperature baking aluminum powder coatings for automotive exterior trim parts and engine compartment components
Motorcycle Metallic Coating - Adaptable for high-gloss metallic texture baking paint on motorcycle bodies, fuel tanks and other parts
High-End Hardware Metallic Paint - Used for high-temperature baking metallic coatings of high-end hardware accessories and precision instrument casings
| Chemical Type | Thermoplastic acrylic resin |
| Technology Type | High-temperature baking type, solvent-based |
| Appearance | Transparent liquid |
| Solvent Composition | Toluene/Butanol mixed system |
| Solids Content | 50 ± 1 % |
| Color (Gardner) | ≤ 1 |
| Viscosity (25℃, Gardner) | U-W |
| Acid Value | 2 - 5 mg KOH/g |
| OH Value (based on solids) | None |
| Glass Transition Temperature (Tg) | Approx. 45-55 ℃ |
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