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

Micron ME39235 Water-Based Wax Emulsion

Micron ME39235 is a high-performance water-based wax emulsion from Micron’s ME series, delivering excellent slip, abrasion resistance and matting effect for coatings, inks and adhesives. It features low VOC, stable dispersion, and compatibility with acrylics, vinyls and polyurethanes—ideal for eco-friendly industrial applications requiring durable surface protection.
  • micron me39235 water based wax emulsion_ad9b7258
  • micron me39235 water based wax emulsion_ad9b7258

Features Of Micron ME39235 Water-Based Wax Emulsion

  1. Highly stable anionic water-based emulsion with excellent shelf life and freeze-thaw resistance.

  2. Delivers superior slip, abrasion resistance, and surface hydrophobicity after film formation.

  3. Low VOC and APEO-free formulation compliant with global environmental and safety regulations.

  4. Excellent compatibility with acrylics, styrene-acrylics, PVA, and other common waterborne polymer systems.

  5. Provides uniform wax distribution and low foam generation during high-shear mixing and application.

Typical Applications Of Micron ME39235 Water-Based Wax Emulsion

  1. Waterborne architectural coatings for enhanced scrub resistance and sheen control.

  2. Industrial wood finishes requiring mar resistance and tactile softness.

  3. Printing inks (flexo & gravure) for improved rub resistance and gloss modulation.

  4. Paper and board coatings to boost moisture barrier and surface smoothness.

  5. Textile auxiliaries for durable water repellency without compromising breathability.

Specifications Of Micron ME39235 Water-Based Wax Emulsion

Chemical TypeBlended polyethylene and carnauba wax emulsion
Product FormOpaque white liquid
AppearanceHomogeneous, slightly viscous milky dispersion
pH (10% aqueous dilution)7.0 – 8.5
Solids Content (wt%)28 ± 1%
Particle Size (D50)0.2 – 0.4 µm
Viscosity (Brookfield, #2 spindle, 25°C)50 – 150 cP
Minimum Film Formation Temperature (MFFT)≥ 5°C


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