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

Hanwha KCM-12 PVC Paste Resin

Hanwha KCM-12 is a high-performance PVC paste resin from Hanwha’s KCM series, engineered for superior gelation control, viscosity stability, and smooth film formation. Widely used in dip molding, coating, and foam applications, it delivers consistent dispersion, excellent fusion properties, and low residual VCM—ensuring reliability in demanding industrial processes across automotive, medical, and consumer goods sectors.
  • hanwha kcm 12 pvc paste resin_0eb8caeb
  • hanwha kcm 12 pvc paste resin_0eb8caeb

Features Of Hanwha KCM-12 PVC Paste Resin

  1. Optimized particle size distribution for excellent colloidal stability in plastisol formulations.

  2. Consistent fusion behavior enabling smooth processing and uniform gelation at moderate temperatures.

  3. Low residual vinyl chloride monomer (VCM) content, compliant with global health and safety standards.

  4. High bulk density for improved handling efficiency and reduced transportation volume.

  5. Excellent compatibility with common plasticizers, stabilizers, and additives used in industrial pastes.

Typical Applications Of Hanwha KCM-12 PVC Paste Resin

  1. Flexible flooring (e.g., vinyl composition tile and sheet flooring).

  2. Dip-molded products including gloves, balloons, and medical tubing.

  3. Coated fabrics for automotive interiors, upholstery, and technical textiles.

  4. Rotational molding of hollow articles such as tanks and containers.

  5. Sealants, caulks, and specialty adhesives requiring paste-grade rheology.

Specifications Of Hanwha KCM-12 PVC Paste Resin

Chemical TypePolyvinyl Chloride (PVC) Paste Resin
Product FormFree-flowing white powder
AppearanceWhite, free-flowing granular powder
Primary ApplicationsPastel-based flexible PVC products
Key FeaturesGood dispersion stability, controlled viscosity build-up, balanced fusion profile
Residual VCM≤ 1 ppm (as per ISO 16000-23)
Apparent Density0.45–0.52 g/cm³
Particle Size (D50)1.0–1.4 µm


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