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High-Performance Rutile Titanium Dioxide Pigment TYR-588 from China Suppliers and Factory for Versatile Applications

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Introducing TYR-588, a high-performance titanium dioxide (TiOpigment manufactured by Tianyuan Group, a leading supplier in China. Utilizing an advanced chlorination process, TYR-588 is coated with Al2O3, ZrO2, and a unique organic surface treatment, making it ideal for a wide variety of applications. This versatile TiO2 pigment is perfect for formulators in need of a single-grade solution that excels in water and solvent-based paints, inks, paper, and plastics. You can rely on TYR-588 for indoor and outdoor gloss and semi-gloss architectural coatings, automotive OEM and refinish paints, coil coatings, as well as industrial anti-corrosive, decorative, and powder coatings. Furthermore, it is suitable for various ink applications including letterpress, offset, and intaglio printing. With its incredible adaptability, TYR-588 is the perfect choice for engineering plastics, colorants, profiles, and other plastic applications. Choose TYR-588 from one of the top TiO2 factories in China for exceptional quality and performance.

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    Application Industries
    🎨 Coatings & Paints Industry

    TYR-588 titanium dioxide pigment is produced through the chloride process and features advanced alumina, zirconia, and organic surface treatments, offering outstanding versatility across various industrial applications. The pigment's bluish undertone and high brightness contribute to superior aesthetic qualities in both water based and solvent based systems, while its excellent durability ensures long term performance in applications such as architectural coatings, automotive finishes, industrial protective systems, and powder coatings.

    🧱 Plastics & Color Master-batch Industry

    For plastics and color master-batch manufacturing, TYR-588 delivers exceptional performance characteristics that enhance both aesthetic appeal and functional properties. The pigment's uniform surface treatment and controlled particle characteristics promote excellent dispersion in various polymer systems, improving color consistency, brightness, and mechanical performance in engineering plastics, profiles, and specialty plastic applications.

    🖨️ Ink & Paper Coating Industry

    In ink and paper coating applications, TYR-588 provides superior opacity, excellent printability, and consistent color development. The pigment's low oil absorption and fine particle size contribute to smooth formulations with outstanding flow characteristics, supporting high speed printing processes and efficient paper coating operations.

    Parameter Information
    Physical Property Typical Value
    TiO₂ Content % ≥94.0
    Rutile Content % ≥99.0
    CIE L* (Linseed Oil System) ≥97.0
    CIE b* (Linseed Oil System) ≤2.0
    TCS (Tinting strength) ≥1900
    Oil Absorption g/100g ≤18.0
    pH value 6.0–8.5
    Volatile % at 105℃ ≤0.5
    Resistivity (Ω·m) ≥100
    Sieve Residue % (45μm) ≤0.05
    Product Performance
    TYR-588 titanium dioxide pigment features excellent bluish undertone, high brightness, and superior durability through its comprehensive alumina, zirconia, and organic surface treatment system. These characteristics provide outstanding optical properties and processing stability across various water-based and solvent-based coatings, plastics, and ink applications, supported by consistent quality and reliable performance in demanding industrial environments.
    • TYR588
    • TYR588(2)
    Application Scope
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    TYR-588 titanium dioxide pigment finds extensive application in architectural coatings for interior and exterior surfaces, automotive paints, industrial anti-corrosive systems, powder coatings, printing inks, engineering plastics, and paper coatings.

    Architectural Coatings Automotive Paints Anti-Corrosive Systems Powder Coatings Printing Inks Engineering Plastics Paper Coatings
    Frequently Asked Questions
    Q What manufacturing process is used to produce TYR-588 titanium dioxide pigment?

    TYR-588 is produced through the chloride process, which ensures high purity, consistent particle size, and superior optical performance compared to the sulfate process. This method also supports its advanced alumina, zirconia, and organic surface treatment system.

    Q Is TYR-588 suitable for both water-based and solvent-based coating systems?

    Yes. TYR-588 is compatible with both water-based and solvent-based coating systems. Its comprehensive surface treatment provides excellent dispersion, stability, and optical performance across a wide range of formulation types, including architectural coatings, automotive finishes, and industrial protective coatings.

    Q What is the TiO₂ content and rutile content of TYR-588?

    TYR-588 contains a minimum TiO₂ content of ≥94.0% and a rutile content of ≥99.0%, ensuring high whiteness, excellent opacity, and outstanding UV resistance for long-term performance in demanding applications.

    Q How does TYR-588 perform in plastics and color master-batch applications?

    TYR-588 demonstrates excellent dispersion in various polymer systems due to its uniform surface treatment and controlled particle characteristics. It enhances color consistency, brightness, and mechanical performance in engineering plastics, profiles, and specialty plastic products, making it a reliable choice for color master-batch manufacturers.

    Q What makes TYR-588 suitable for ink and paper coating applications?

    TYR-588 features low oil absorption (≤18.0 g/100g) and fine particle size, which contribute to smooth formulations with excellent flow characteristics. These properties support high-speed printing processes and efficient paper coating operations while delivering superior opacity and consistent color development.

    Q What surface treatment technology is applied to TYR-588?

    TYR-588 undergoes a multi-layer surface treatment involving alumina, zirconia, and organic compounds. This combination enhances weather resistance, dispersibility, and compatibility with various resin systems, resulting in improved durability and processing stability across coatings, plastics, and ink applications.

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