Guangzhou Eric Wei Chemical Co., Ltd.
Guangzhou Eric Wei Chemical Co., Ltd.

Formosa Plastics PR-500 PVC Paste Resin

Formosa Plastics PR-500 is a high-quality PVC paste resin from the PR series, engineered for superior gelation, viscosity control and particle stability. Ideal for dip coating, slush molding and rotational casting, it delivers consistent dispersion and excellent fusion performance in flexible PVC applications like gloves, toys and automotive interiors.
  • formosa plastics pr 500 pvc paste resin_e3882c42
  • formosa plastics pr 500 pvc paste resin_e3882c42

Features Of Formosa Plastics PR-500 PVC Paste Resin

  1. Optimized particle size distribution for excellent fusion characteristics and smooth gelation.

  2. Highly consistent viscosity build-up in plastisol formulations, ensuring predictable processing behavior.

  3. Superior thermal stability during high-shear mixing and extended storage of plastisols.

  4. Low residual vinyl chloride monomer (VCM) content, meeting stringent global safety and regulatory requirements.

  5. Excellent suspension polymerization origin, delivering uniform particle morphology and batch-to-batch reproducibility.

Typical Applications Of Formosa Plastics PR-500 PVC Paste Resin

  1. Automotive interior coatings including dashboards, door panels, and seating surfaces.

  2. Medical tubing and disposable devices requiring biocompatibility and precise dimensional control.

  3. Industrial flooring and resilient sheet goods with high abrasion resistance and chemical durability.

  4. Wire and cable jacketing for low-smoke, halogen-free compound systems.

  5. Consumer products such as inflatable toys, gloves, and footwear components.

Specifications Of Formosa Plastics PR-500 PVC Paste Resin

Chemical TypePolyvinyl Chloride (PVC) Paste Resin
Product FormWhite free-flowing powder
AppearanceFree-flowing granular powder, no visible impurities
K-Value (ASTM D1243)67–69
Residual VCM Content (ppm)≤ 5
Apparent Density (g/cm³)0.48–0.52
Volatile Matter (% w/w)≤ 0.4
Sieve Residue (63 μm, %)≤ 0.2


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