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Top 13463-67-7 Titanium Dioxide Coating Supplier | High-Grade Rutile

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Top 13463-67-7 Titanium Dioxide Coating Supplier | High-Grade Rutile

Strategic Procurement of Rutile Titanium Dioxide for High-Performance Coatings

In the demanding landscape of industrial coatings, the selection of premium raw materials is paramount to achieving superior product performance and longevity. At the core of high-quality opaque coatings lies titanium dioxide, a white pigment renowned for its exceptional brightness, opacity, and UV resistance. For discerning businesses seeking a reliable partner, the quest for a distinguished 13463-67-7 titanium dioxide using for coating supplier is critical. Our focus is on delivering industry-grade rutile titanium dioxide, specifically engineered to meet the stringent requirements of diverse coating applications, ensuring unparalleled quality and consistent supply.

The chemical compound 13463-67-7, commonly known as titanium dioxide (TiO2), is indispensable across various sectors. For coating applications, the rutile crystalline form is overwhelmingly preferred due to its higher refractive index, superior weathering resistance, and enhanced hiding power compared to anatase. This makes it the pigment of choice for producing durable, vibrant, and protective finishes for everything from architectural paints to demanding industrial systems. Our offerings cater directly to the needs of paint factories and manufacturers requiring robust, universal type product TiO2 pigment for their formulations.

Current Industry Trends in Titanium Dioxide for Coating Applications

The global market for rutile titanium dioxide continues to evolve, driven by increasing demand from the construction, automotive, and packaging sectors. Key trends include a heightened focus on sustainability, with manufacturers exploring greener production methods and high-performance pigments that offer extended service life, thereby reducing repaint cycles. There's also a growing emphasis on specialized grades of TiO2 that provide enhanced dispersibility, UV protection, and improved tinting strength, especially for advanced architectural and industrial coatings. The demand for industrial-grade rutile titanium dioxide for paint factories remains robust, with a consistent need for competitive pricing, such as the `paint rutile type price per ton titanium dioxide`.

Digitalization and automation in manufacturing processes are also shaping the supply chain, leading to more efficient production and consistent product quality. Furthermore, innovation in surface treatment technologies allows for the development of TiO2 pigments that offer superior compatibility with various resin systems, facilitating the formulation of low-VOC (Volatile Organic Compound) and water-based coatings, aligning with global environmental regulations. As a leading 13463-67-7 titanium dioxide using for coating supplier, we stay at the forefront of these advancements, ensuring our products meet future market demands.

The Manufacturing Process of Rutile Titanium Dioxide for Coatings

The production of high-purity rutile titanium dioxide pigment (CAS 13463-67-7) for coating applications is a complex, multi-stage process, typically executed via either the Sulfate process or the Chloride process. Both methods are designed to transform naturally occurring titanium ores (ilmenite or rutile) into a finely controlled, highly effective pigment. Our manufacturing expertise ensures a consistent `dye pigment cas 13463-67-7 titanium dioxide factory` output.

Detailed Process Flow (Chloride Process Illustrated):

  1. Raw Material Preparation: High-purity rutile ore or synthetic rutile is typically used. The ore is crushed and milled to a fine particle size, preparing it for chlorination.
  2. Chlorination: The prepared ore is reacted with chlorine gas and coke in a fluidized bed reactor at high temperatures (typically 900-1000°C) to produce titanium tetrachloride (TiCl4) and other metal chlorides.
    2FeTiO3 + 7Cl2 + 6C → 2TiCl4 + 2FeCl3 + 6CO (simplified for ilmenite)
    TiO2 + 2Cl2 + C → TiCl4 + CO2 (simplified for rutile)
  3. Purification: The crude TiCl4 is a liquid that contains impurities like vanadium oxychloride, iron chlorides, and other metal chlorides. It undergoes a series of distillation and chemical treatments to remove these impurities, ensuring an ultra-pure TiCl4. This stage is critical for the final product's quality.
  4. Oxidation (Vapor Phase): The purified TiCl4 is then vaporized and reacted with oxygen at high temperatures (typically 1000-1400°C) in a specially designed reactor to produce fine particles of titanium dioxide and regenerate chlorine. This controlled oxidation process dictates the primary particle size and morphology.
    TiCl4 + O2 → TiO2 + 2Cl2
  5. Milling and Surface Treatment: The raw TiO2 pigment, often in its rutile form from the oxidation, undergoes milling to achieve the desired particle size distribution crucial for optimal optical properties. Subsequent surface treatments with inorganic oxides (e.g., alumina, silica, zirconia) and organic compounds are applied. These treatments enhance dispersibility, weatherability, chalk resistance, and compatibility with various polymer systems, making it ideal for `China rutile titanium dioxide MBR9668-coating` and similar high-performance grades.
  6. Filtration, Washing, Drying, and Grinding: The treated slurry is filtered, thoroughly washed to remove residual salts, dried, and then micronized (usually by jet milling) to break down agglomerates and achieve the final desired fineness and particle size distribution.
  7. Quality Control & Packaging: Strict quality control measures, including particle size analysis, oil absorption, whiteness, tinting strength, and dispersibility tests, are conducted. Products are then packaged for distribution.

Testing Standards & Certifications: Our production adheres rigorously to international testing standards such as ISO 591-1:2000 (Titanium Dioxide Pigments for Paints), ASTM D476 (Standard Specification for Titanium Dioxide Pigments), and ISO 9001 for quality management systems. This ensures that every batch from our 13463-67-7 titanium dioxide using for coating manufacturer facility meets the highest benchmarks for consistency and performance.

Service Life & Target Industries: The inherent properties of our rutile TiO2 significantly extend the service life of coatings, offering exceptional UV protection and chemical resistance. This makes our products indispensable in diverse target industries including:

  • Architectural Coatings (Interior/Exterior)
  • Automotive OEM & Refinish Coatings
  • Industrial Coatings (e.g., marine, protective, coil coatings)
  • Powder Coatings
  • Plastics, Paper, and Inks
  • Petrochemical and Metallurgy (for corrosion-resistant finishes)
  • Water Supply & Drainage Infrastructure (for protective linings)

Advantages: By optimizing particle size and surface treatment, our TiO2 enables coatings with superior energy saving (due to excellent solar reflectivity for cool roof applications) and enhanced corrosion resistance in harsh environments.

Technical Specifications: Rutile TiO2 Pigment for Coatings

Understanding the precise technical parameters of rutile titanium dioxide is crucial for formulators to achieve optimal coating performance. Our Titanium Dioxide Rutile TiO2 POWDER titanio dioxide pigment (Product Name) is engineered to deliver exceptional optical and physical properties. We provide `rutile titanium dioxide industry grade for paint factories`, adhering to the highest specifications.

Top 13463-67-7 Titanium Dioxide Coating Supplier | High-Grade Rutile

High-purity rutile titanium dioxide powder, optimized for coating applications.

Typical Product Specification (Example: R996 Equivalent)

Characteristic Unit Typical Value Test Method (ISO/ASTM)
TiO2 Content % (m/m) ≥ 94.0 ISO 591-1:2000
Rutile Content % (m/m) ≥ 98.0 XRD analysis
Whiteness (L) - > 97.5 ASTM E313
Oil Absorption g/100g 18-22 ISO 787-5
Residue on 45μm Sieve % (m/m) ≤ 0.05 ISO 787-7
pH Value - 6.5-8.0 ISO 787-9
Specific Gravity g/cm³ 4.0-4.2 ISO 787-10
Dispersibility (Hegman Scale) µm > 5.5 ASTM D1210
Volatile Matter (105°C) % (m/m) ≤ 0.5 ISO 787-2

These specifications are crucial for ensuring consistent performance in high-volume production for `rutile titanium dioxide industry grade for paint factories`. Our products, including variants like Lomon R996, DHR-966, SR-2377, R5566, R218, R996, and THR6666, are meticulously tested to meet or exceed these benchmarks, guaranteeing reliable optical properties and excellent processing characteristics.

Application Scenarios and Performance Excellence

The versatility of high-quality `universal type product TiO2 pigment titanium dioxide paints R996 supplier` grades makes them indispensable across a spectrum of coating applications. Their primary function is to impart whiteness, opacity, and brightness, but beyond aesthetics, they significantly enhance the protective qualities of coatings.

  • Architectural Coatings: For both interior and exterior paints, TiO2 provides exceptional hiding power and tinting strength, ensuring uniform coverage and vibrant color development. In exterior applications, its UV resistance prevents chalking and fading, extending the lifespan of painted surfaces.
  • Industrial & Protective Coatings: In demanding environments such as marine vessels, pipelines, and heavy machinery, coatings formulated with our rutile TiO2 offer superior corrosion resistance and chemical stability. They form a robust barrier against environmental degradation, vital for infrastructure and equipment longevity.
  • Automotive Coatings: Critical for both OEM and refinish applications, TiO2 contributes to the brilliant white base coats and vibrant metallic finishes. Its resistance to weathering and yellowing ensures that vehicles retain their aesthetic appeal and protective qualities over time.
  • Powder Coatings: In powder formulations, the uniform particle size and excellent dispersibility of our rutile TiO2 ensure smooth, defect-free finishes with outstanding opacity and color consistency.
  • Plastics, Paper, and Inks: Beyond traditional paints, TiO2 is a key opacifier in various plastics, providing whiteness and UV protection to PVC, polyolefins, and engineering plastics. In paper, it improves brightness and opacity, while in inks, it ensures vibrant print quality and coverage.

Our position as a leading 13463-67-7 titanium dioxide using for coating factories enables us to supply the high-performance pigment grades required for these diverse and critical applications.

Technical Advantages and Performance Metrics

The technical superiority of our rutile titanium dioxide for coating applications is defined by a combination of inherent properties and advanced manufacturing techniques. These advantages translate directly into enhanced performance for the end-user's products.

  • Superior Opacity and Hiding Power: With a high refractive index of approximately 2.7, rutile TiO2 efficiently scatters visible light, providing unparalleled opacity. This reduces the need for multiple coating layers, leading to material savings and faster application times.
  • Excellent Tinting Strength: Our pigments offer high tinting strength, allowing for the creation of vivid and consistent colors even at lower pigment concentrations. This translates to cost-effectiveness for formulators.
  • Outstanding Weatherability and UV Resistance: The rutile crystal structure is highly stable, resisting photodegradation caused by UV radiation. This property is critical for exterior coatings, preventing chalking, fading, and degradation of the binder, significantly extending the coating's lifespan.
  • Optimized Dispersibility: Advanced surface treatments with inorganic oxides (e.g., alumina, silica) and specialized organic compounds enhance the dispersibility of our TiO2 in various resin systems. This ensures smooth processing, prevents agglomeration, and contributes to a uniform finish without defects.
  • High Brightness and Whiteness: Engineered for optimal light reflectance, our TiO2 delivers exceptional brightness and whiteness, crucial for achieving clean, crisp colors and a brilliant aesthetic.
  • Chemical Inertness: Titanium dioxide is chemically stable and inert, meaning it does not react with other components in the coating formulation or with aggressive environmental elements, contributing to long-term coating integrity.
Top 13463-67-7 Titanium Dioxide Coating Supplier | High-Grade Rutile

Advanced processing ensures superior optical properties for coatings.

These attributes collectively contribute to coatings that are not only aesthetically superior but also offer robust protection and durability, reflecting the quality synonymous with a premier `hot sale titanium dioxide rutile lomon r996 suppliers`.

Vendor Comparison: Selecting a Premium Rutile TiO2 Supplier

Choosing the right `rutile titanium dioxide dhr-966. sr-2377 r5566 r218 r996 thr6666` supplier is a strategic decision that impacts product quality, cost-efficiency, and supply chain reliability. While numerous providers exist, distinguishing factors include manufacturing capability, quality control, technical support, and logistical efficiency. Our commitment as a dedicated 13463-67-7 titanium dioxide using for coating supplier centers on transparency and demonstrable value.

Key Differentiators in Rutile TiO2 Suppliers

Feature/Criteria Leading Supplier (e.g., Us) Standard Supplier
Manufacturing Process Advanced Chloride Process for high purity & consistency. Sulfate Process (may have more impurities, batch variation).
Quality Control & Certs ISO 9001, REACH compliant, batch-specific COAs, advanced QC lab. Basic QC, limited certifications.
Product Consistency Extremely high batch-to-batch consistency (TiO2 content, particle size, whiteness). Moderate consistency, potential for variation requiring formulation adjustments.
Technical Support Dedicated technical team, formulation assistance, application expertise. Limited technical support, basic product data sheets.
Customization Options Ability to tailor surface treatments and particle sizes for specific applications. Standard product grades only.
Supply Chain Reliability Robust global logistics, multiple production sites, strong inventory management. Single-source reliance, potential for supply disruptions.
Environmental Compliance Adherence to international environmental regulations, sustainable practices. Variable compliance, less emphasis on sustainability.

Partnering with an established and reputable `china rutile titanium dioxide mbr9668-coating` provider ensures access to not only high-grade materials but also a wealth of expertise and dependable service. We pride ourselves on offering competitive `paint rutile type price per ton titanium dioxide` while upholding the highest quality benchmarks.

Customized Solutions and Formulation Expertise

Recognizing that no two coating applications are identical, we, as a proactive 13463-67-7 titanium dioxide using for coating supplier, offer comprehensive customized solutions. Our technical team works closely with clients to understand their specific performance requirements, whether it's for ultra-high gloss automotive finishes, highly durable marine coatings, or specialty cool roof paints.

Customization capabilities include:

  • Tailored Surface Treatments: Adjusting the inorganic and organic surface coatings to optimize compatibility with specific resin systems (e.g., acrylics, epoxies, polyurethanes) and solvents, enhancing dispersibility and stability.
  • Particle Size Engineering: Fine-tuning the primary particle size and distribution to achieve specific optical properties like maximum hiding power, tinting strength, or gloss retention.
  • Specialized Grades: Developing bespoke grades with enhanced properties such as improved photostability for extreme outdoor exposure, increased resistance to industrial chemicals, or modified rheological properties for unique application methods.
  • Technical Consultation: Our experts provide guidance on pigment loading, dispersion techniques, and formulation adjustments to help clients optimize their coating performance and cost-efficiency.

This collaborative approach ensures that our clients receive a TiO2 pigment perfectly aligned with their specific product development goals and production processes, reinforcing our status as a reliable `hot sale titanium dioxide rutile lomon r996 suppliers`.

Real-World Application Case Studies

Our track record as a dependable 13463-67-7 titanium dioxide using for coating manufacturer is built upon successful partnerships and demonstrable results across various industries.

Case Study 1: High-Performance Architectural Exterior Paint

A leading architectural paint manufacturer sought to develop a premium exterior coating with superior weatherability and extended color retention. They struggled with existing TiO2 grades showing premature chalking and yellowing in accelerated weathering tests.

  • Solution: We supplied a specialized rutile TiO2 grade (e.g., equivalent to Lomon R996) with an advanced inorganic surface treatment designed for maximum UV light scattering and minimal photocatalytic activity.
  • Result: The client achieved a 25% improvement in gloss retention and a significant reduction in chalking after 3000 hours of QUV testing, exceeding industry standards. This resulted in a new product line with a 15-year warranty, securing a larger market share.

Case Study 2: Marine Anti-Corrosive Coatings

An industrial coatings company specializing in marine applications needed a robust pigment for its anti-corrosive primer and topcoat systems, requiring exceptional barrier properties and salt-spray resistance. Their current pigment caused issues with film integrity and blistering.

  • Solution: We provided a high-purity `rutile titanium dioxide dhr-966. sr-2377 r5566 r218 r996 thr6666` grade with optimized particle packing density and a non-reactive surface, contributing to a denser, more impermeable film.
  • Result: The new formulation passed 2000 hours of neutral salt spray testing (ASTM B117) with zero blistering or delamination, a 50% improvement over previous formulations. This enabled the client to secure contracts for critical offshore platform maintenance.

Customer Feedback:

"Switching to their TiO2 pigment was a game-changer for our automotive refinish line. The consistency in tinting strength and gloss retention is unmatched, allowing us to deliver flawless finishes every time. Their technical support was invaluable during our formulation adjustments."
— Head of R&D, Automotive Paint Manufacturer

Frequently Asked Questions (FAQ)

Q: What is the primary difference between rutile and anatase titanium dioxide for coatings?

A: Rutile TiO2 is preferred for coatings due to its higher refractive index (providing superior opacity and hiding power), greater density, and significantly better UV and weathering resistance compared to anatase. Anatase is typically used in specific applications requiring photocatalytic activity. Our 13463-67-7 titanium dioxide using for coating supplier specializes exclusively in high-performance rutile grades.

Q: How does particle size affect TiO2 performance in coatings?

A: Optimal particle size (typically 0.2-0.3 micrometers) is crucial for maximizing light scattering and thus opacity. Particles that are too small or too large will scatter light less efficiently. Our precision manufacturing ensures ideal particle size distribution for superior optical performance, a hallmark of a reliable `dye pigment cas 13463-67-7 titanium dioxide factory`.

Q: Are your products compliant with international regulations (e.g., REACH, RoHS)?

A: Yes, our rutile titanium dioxide products are manufactured under strict quality control and environmental standards, including full compliance with REACH regulations for the European market and RoHS directives where applicable. We provide comprehensive documentation upon request, affirming our commitment as a responsible `china rutile titanium dioxide mbr9668-coating` provider.

Q: What is the typical lead time for large orders?

A: Lead times can vary based on order volume, specific product grade, and current inventory. Generally, for standard grades and typical order sizes, our lead time is between 2-4 weeks from order confirmation. We maintain robust inventory levels and efficient logistics to minimize delays. For specific projects or urgent requirements, please contact our sales team for precise scheduling, reinforcing our dedication as a `universal type product TiO2 pigment titanium dioxide paints R996 supplier`.

Order Fulfillment, Warranty, and Customer Support

As a trusted `hot sale titanium dioxide rutile lomon r996 suppliers`, we understand that prompt delivery, robust warranties, and responsive customer support are as crucial as product quality.

Lead Time and Fulfillment

Our streamlined order processing and global logistics network ensure efficient fulfillment. We typically offer a lead time of 15-25 business days for most standard orders, with expedited options available for urgent requirements. Our inventory management systems are optimized to minimize stockouts and ensure a continuous supply of `rutile titanium dioxide dhr-966. sr-2377 r5566 r218 r996 thr6666` for our partners. We utilize strategic warehousing and collaborate with reliable freight forwarders to ensure timely and secure delivery worldwide.

Warranty Commitments

All our titanium dioxide products come with a comprehensive quality assurance warranty, guaranteeing that they meet or exceed the specified technical parameters as outlined in our Certificates of Analysis (CoA) and Material Safety Data Sheets (MSDS). This warranty covers defects in material and workmanship, ensuring peace of mind for our clients. Specific warranty details are provided with each purchase agreement.

Dedicated Customer Support

Our commitment to our clients extends beyond delivery. We offer dedicated after-sales support, including technical assistance, troubleshooting, and continuous consultation. Our team of experienced technical specialists is available to address any queries regarding product application, formulation, or performance. We believe in building long-term partnerships based on trust, reliability, and unparalleled service.

References and Further Reading

  1. "Titanium Dioxide Pigments: Science, Technology and Economic Aspects," G. Buxbaum, G. Pfaff (Eds.), VCH Verlagsgesellschaft mbH, 2005.
  2. "Pigment Handbook, Vol. 1: Properties and Economics," P.A. Lewis (Ed.), John Wiley & Sons, Inc., 1988.
  3. ISO 591-1:2000, "Titanium dioxide pigments for paints – Part 1: Specifications and methods of test." International Organization for Standardization.
  4. "The Chemistry of Titanium Dioxide," Chemical Reviews, Vol. 114, No. 19, pp 9370-9386, 2014.
  5. ASTM D476-00, "Standard Specification for Titanium Dioxide Pigments." ASTM International.
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