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

Hanwha HB-65 PVC Paste Resin

Hanwha HB-65 is a high-quality PVC paste resin from Hanwha’s HB series, engineered for superior viscosity control, excellent particle stability and consistent gelation. Widely used in coatings, sealants and synthetic leather, it delivers smooth processing, strong film formation and reliable rheological performance in demanding industrial applications.
  • hanwha hb 65 pvc paste resin_8e22f50a
  • hanwha hb 65 pvc paste resin_8e22f50a

Features Of Hanwha HB-65 PVC Paste Resin

  1. Optimized particle size distribution for excellent paste stability and low viscosity.

  2. High fusion rate enabling efficient processing in high-speed dip coating and slush molding operations.

  3. Consistent batch-to-batch quality with stringent control over residual vinyl chloride monomer (VCM) levels.

  4. Excellent gelation characteristics yielding uniform, flexible films with superior tensile strength.

  5. Compatible with a broad range of plasticizers, stabilizers, and pigments for versatile formulation flexibility.

Typical Applications Of Hanwha HB-65 PVC Paste Resin

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

  2. Medical tubing and disposable gloves requiring smooth surface finish and biocompatibility support.

  3. Industrial flooring and wall coverings demanding durability and chemical resistance.

  4. Leather-like synthetic materials for furniture upholstery and footwear linings.

  5. Toy manufacturing where consistent melt behavior and low extractables are critical.

Specifications Of Hanwha HB-65 PVC Paste Resin

Chemical TypePolyvinyl Chloride (PVC) Paste Resin
Product FormFree-flowing white powder
AppearanceWhite, free-flowing granular powder
Primary ApplicationsDip coating, slush molding, rotational casting, spread coating
Key FeaturesMedium molecular weight, narrow particle size distribution
Residual VCM Content≤ 1 ppm (as per ISO 10567)
Apparent Density0.45–0.55 g/cm³
Fusion Temperature Range160–180 °C (DSC, 10 °C/min)


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