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

Kaneka KaneVinyl PSL-685 PVC Paste Resin

Kaneka KaneVinyl PSL-685 is a high-performance PVC paste resin from Kaneka’s KaneVinyl series, engineered for superior viscosity control, excellent fusion properties, and consistent particle morphology—ideal for demanding applications like coated fabrics, flooring, and automotive interiors.
  • kaneka kanevinyl psl 685 pvc paste resin_553551eb
  • kaneka kanevinyl psl 685 pvc paste resin_553551eb

Features Of Kaneka KaneVinyl PSL-685 PVC Paste Resin

  1. Optimized particle morphology for excellent colloidal stability in plastisol formulations.

  2. Consistent low-viscosity plastisol formation with rapid fusion and smooth gelation profile.

  3. High thermal stability during processing, minimizing discoloration and degradation.

  4. Superior batch-to-batch reproducibility ensured by Kaneka’s proprietary suspension polymerization control.

  5. Low residual vinyl chloride monomer (VCM) content, compliant with stringent global regulatory requirements.

Typical Applications Of Kaneka KaneVinyl PSL-685 PVC Paste Resin

  1. Automotive interior coatings including instrument panel skins and door trims.

  2. Medical tubing and disposable medical device components requiring biocompatibility support.

  3. Industrial flooring and resilient wall coverings with high abrasion resistance.

  4. Leather-like synthetic upholstery for furniture and transportation seating.

  5. Protective gloves and coated fabrics for occupational safety applications.

Specifications Of Kaneka KaneVinyl PSL-685 PVC Paste Resin

Chemical TypePolyvinyl chloride (PVC) homopolymer paste resin
Product FormFree-flowing white powder
AppearanceWhite, free-flowing granular powder
K-Value (ASTM D1243)67–69
Primary ApplicationsPaste processing: dip coating, slush molding, spread coating, rotational casting
Key FeaturesFast fusion, low plastisol viscosity, excellent storage stability
Residual VCM (ppm)≤ 5 ppm (as tested per ISO 10567)
Volatiles Content (wt%, ASTM D2124)≤ 0.4%


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