Tinox Chemical Co., Ltd.
                                                                                                           
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Since 2019
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TINOX TPW-716 Hybrid Titanium Dioxide Pigment with Brightness L* ≥97.0 and Dispersibility Hegman Scale ≥6.5 for High-Performance Coatings

Price Negotiable
Price: Negotiable
MOQ: 20MT
Delivery Time: 5-8 work days
Brand: TINOX
Product Description
TINOX TPW-716 Hybrid Technology Titanium Dioxide Pigment – High-Performance for Superior Coatings & Paint, Anti-Dumping Duty Exempt
Product Description

TINOX TPW-716 Hybrid Pigment White is a premium performance hybrid pigment for superior coatings, based on rutile-type TiO₂. Engineered specifically for high-performance paint applications, it combines premium TiO₂ pigment components with ultra-fine functional fillers through a proprietary manufacturing process.

Exceptional Performance Advantages
Superior Optical Properties
Brightness L* ≥ 96.0 with bluish undertone for exceptional whiteness and visual appeal
Excellent Gloss Development
Enhanced surface reflectivity and gloss stability for premium finishes
Strong Hiding Power
Outstanding coverage with reduced pigment loading requirements
Enhanced Durability
Improved abrasion resistance, weather resistance, and coating film hardness
Excellent Dispersion
Hegman ≥ 6.5 for easy incorporation and reduced processing time
Environmental Benefits
Lower CO₂ emissions per unit compared to pure TiO₂
Technical Specifications
Parameter Value
TiO₂ content ≥74.0%
Rutile content ≥99.0%
Brightness L* ≥96.0
Oil absorption ≤20 g/100g
Relative Humidity (105°C) ≤0.5%
Post-treatment Al, Zr, P, organic
pH value 6.5-8.5
Performance Validation

Based on comprehensive testing in the TINOX TPW Series brochure, TPW-716 demonstrates:

  • Whiteness index nearly matching premium TiO₂ pigment R-2160
  • Superior performance compared to standard TiO₂ pigment R-2140
  • Excellent opacity levels comparable to pure TiO₂ pigments
  • Outstanding gloss development for high-quality finishes
Recommended Formulation
High-Gloss Water-Based Acrylic Enamel (Based on Test Data)
Component Function Content (%)
Deionized Water Solvent 18.0
Dispersing Agent Pigment dispersion 0.6
Wetting Agent Surface tension reduction 0.3
TINOX TPW-716 Primary pigment 22.0
Acrylic Emulsion (50%) Binder 45.0
Coalescing Agent Film formation 2.5
Defoamer Foam control 0.4
Rheology Modifier Viscosity control 0.8
Preservative Biostability 0.2
Ammonia (28%) pH adjustment 0.2
Water (adjustment) Final adjustment 10.0
Processing Instructions:
  1. Add water, dispersing agent, and wetting agent to mixing vessel
  2. Slowly add TINOX TPW-716 under moderate agitation (800-1000 rpm)
  3. Increase agitation speed to 1500-2000 rpm for 15-20 minutes until Hegman fineness ≥6.5 is achieved
  4. Reduce speed and slowly add acrylic emulsion
  5. Add coalescing agent, defoamer, rheology modifier, and preservative
  6. Adjust pH to 7.5-8.5 with ammonia solution
  7. Add remaining water to achieve desired viscosity
  8. Filter and package
Expected Performance (Based on Tinox Test Data):
  • Whiteness Index: ≥96.5
  • Gloss (60°): ≥85 GU
  • Contrast Ratio: ≥0.98
  • Yellowness Index: <1.5
  • PVC: ~25%

Note: This formulation is based on test data from the TINOX TPW Series brochure, specifically the acrylic enamel paint tests with 75% emulsion content (PVC = 25%).

Contact Information
TINOX CHEMIE GMBH
Lutticher Straße 132, 40547 Dusseldorf, Germany
Tel: +49 (0)211 52809600
Factory Images
TINOX factory exterior showing industrial facility
Factory Exterior
TINOX production laboratory with testing equipment
Lab
Certifications & Reports
REACH certification document for TINOX products
REACH
SGS quality test report for TINOX TPW-716
SGS
ISO 9001 compliance certificate for TINOX manufacturing
ISO 9001

Get in Touch

Have questions about our products or want to discuss a custom order? Our team is ready to help you.

Company Tinox Chemical Co., Ltd.
Location 1st Floor, No.40, No.69, Zhengbei Middle Street, Huayang Street, Tianfu New District, Chengdu City, Sichuan,China
Contact Person Chao Huang

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