MICROSPERSION® 1213 UVW

A water based anionic dispersion of modified polypropylene wax, densified with silica for consistent gloss control with clarity and stability in water based and UV/EB coatings


FEATURES AND BENEFITS

  • Convenient, ready-to-use, pourable anionic acrylic-stabilized wax dispersion
  • Effective gloss control with good in-can stability
  • Adds slip with scratch and mar resistance
  • Nonabrasive wax technology imparts a smoother surface feel vs. silica-based additives
  • Provides burnish and blocking resistance

COMPOSITION

Anionic acrylic-stabilized wax dispersion

SYSTEMS AND APPLICATIONS

Water based coatings and inks. Industrial coatings (including plastic, metal and leather); architectural wall and trim paints; stains, sealers and varnishes; wood coatings; printing inks and OPV's (including flexo and gravure); floor coatings.

TYPICAL PROPERTIES

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AppearanceBeige Liquid
Density at 25 °C (g/cc)1.01
Dry Wax IDMicromatte 1213 UVW
Emulsifier TypeNonionic
Mean Particle Size (µm)5.0 - 7.5 (wax)
Natural or Naturally DerivedNo
NPIRI Grind2.0 - 3.5
pH7.5 - 9.0
Resin Type/SolidsAcrylic/7.8%
Viscosity at 25 °C (cP)2,500 - 5,000
Wax Solids40%

FEATURED PERFORMANCE PROPERTIES

Compare
Block Resistance
Burnish Resistance
Cleanability
In-Can Stability
Lubricity and Smooth Feel
Matting and Gloss Control
Resistance to Dirt Pick Up
Scratch and Mar Resistance
Soft Touch
Block Resistance
Burnish Resistance
Early Water Resistance
In-Can Stability
Matting and Gloss Control
Metal Mark Resistance
Scratch and Abrasion Resistance
Slip and Lubricity
Block Resistance
Cleanability
Film Clarity
In-Can Stability
Matting and Gloss Control
Scratch and Abrasion Resistance
Scuff and Heel Mark Resistance
Soft Touch
Water Repellency/Beading
Block Resistance
Burnish Resistance
Cleanability
In-Can Stability
Matting and Gloss Control
Scratch and Abrasion Resistance
Block Resistance
Matting and Gloss Control
Block Resistance
Burnish Resistance
Matting and Gloss Control
Key: Effective     Very Effective     Extremely Effective