A Tier-1 automotive parts supplier operating in Latin America reached out to TRESAI Chemical with a persistent color consistency problem. The manufacturer produced injection-molded dashboard panels, door trim components, and center console covers for several major OEM brands, all molded from polypropylene (PP) copolymer resins. Despite using standardized masterbatch formulations, the company was experiencing unacceptable color variation between components — and in some cases, between different cavities of the same multi-cavity injection mold.

The Challenge: Achieving Sub-Delta E 1.0 Color Consistency

The client's color matching difficulties stemmed from a combination of material and process variables that are common in automotive interior production, yet notoriously difficult to resolve simultaneously:

Our Approach: Custom Pigment Blend Development

TRESAI's technical team designed a three-phase development program that addressed each variable systematically:

Phase 1: Pigment Blend Optimization

The first step involved reformulating the pigment composition to ensure consistent color performance across all three PP grades. TRESAI's colorists selected a combination of Pigment Yellow 110 (an isoindolinone yellow), Pigment Yellow 138 (a quinophthalone yellow), and Pigment Orange 73 (a diketopyrrolopyrrole, or DPP, orange) to achieve the target beige-tan color specified by the OEM. Each pigment was chosen for its proven thermal stability above 240°C and its compatibility with polyolefin substrates.

Phase 2: Carrier Resin Matching

Rather than using a single universal carrier resin, TRESAI developed three carrier resin variants — each specifically matched to one of the client's PP grades. The carrier resins were selected based on their MFI, crystallinity, and polar compatibility with the pigment surface treatments. This ensured optimal pigment wetting and dispersion during the twin-screw extrusion compounding process, regardless of which base resin the client was processing.

Phase 3: Let-Down Ratio Optimization

The let-down ratio was fine-tuned through a Design of Experiments (DOE) approach, testing ratios from 1:20 to 1:50 (masterbatch to natural PP) across all three resin grades. The optimal ratio was determined to be 1:35 for the high-MFI grade and 1:30 for the two lower-MFI grades, achieving consistent color strength while minimizing the impact on the base resin's mechanical properties.

Results: Precision Color Matching at Scale

After an eight-week development and validation cycle, the new TRESAI masterbatch formulations were transferred to production. The results exceeded the client's expectations:

By matching the carrier resin to each PP grade and optimizing the pigment blend for thermal stability, TRESAI reduced the client's color reject rate from 8% to less than 0.5%, delivering significant cost savings and eliminating production bottlenecks.

Key Takeaways