ICON 444LSE


Media Finish: Gloss
Media Width: 54"
Roll Length: 45m (Full Roll)

Description

81 micron Industrial Grade High-Tack Print Media

Premium polymeric print media. ICON® 440LSE is the perfect choice for LSE plastic, concrete/brick, and difficult applications requiring the ultimate adhesion. Clear solvent-based adhesive provides high-tack with aggressive adhesion to low surface energy substrates.

The vast majority of calendered films use inferior monomeric and blended plasticizers in their construction. ICON® 440LSE utilizes 100% polymeric plasticizer for superior longevity, durability, flexibility, and shrinkage-resistance.


Highlights

  • 100% Polymeric Construction
  • 81 micron Film Thickness with High Opacity
  • Aggressive Solvent-Based Acrylic Adhesive
  • High Adhesion to LSE & Moderately Textured Surfaces
  • No Brand Markings on Backside of Release Liner
  • PE Coated 93LB Release Liner
  • ASTM E-84-17 Class A Fire Rating
  • Unprinted Durability up to 7 Years

Applications

  • UTVs, Side-X-SIdes & Personal Watercraft
  • Outdoor Power Equipment
  • Industrial Applications
  • LSE Plastics
  • Smooth Brick & Concrete Graphics
  • Coolers, Porta-Johns & Trash Cans

Ink Compatibility 

  • Solvent
  • Eco-Solvent
  • Latex
  • UV-Curable
  • Thermal Transfer

Product Specifications

Material 82 micron Polymeric Calendered Vinyl
Colour White
Tensile Strength 63N/25mm
Adhesive Clear Solvent-Based Pressure Sensitive Acrylic
Adhesive Thickness 0.028mm +/-10%
Peel Adhesion 23N/25mm from Stainless Steel
Liner 99LB PE Coated Layflat Paper
Liner Release 30 grams/25mm
Dimensional Stability 0.9 mm
Application Temperature 0°C to 27°C recommended, test prior to specific application
Temperature Range -53°C to 104°C
Shelf Life 2 years when stored at 21°C and 50% relative humidity
Print Compatibility Solvent, Eco-Solvent, Latex, UV, and Thermal Transfer Inks
Graphic Life Outdoor durability up to 7 years (unprinted), permanent
Chemical Resistance Resists mild acids, mild akalis, solvents, and salts. Excellent resistance to water, including immersion.

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