3M™ Adhesive Transfer Tape 468MPF

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Up to 400°F (204.4 °C) short-term heat resistance

Excellent solvent resistance

Excellent shear strength to resist slippage and edge lifting

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Details

Highlights
  • Up to 400°F (204.4 °C) short-term heat resistance
  • Excellent solvent resistance
  • Excellent shear strength to resist slippage and edge lifting
  • Thicker adhesives improve wet-out and adhesion on textured surfaces
  • Quick flowing to speed lamination of textured plastics, foams, fabrics, and coated papers
  • Temporarily repositionable adhesive reduces rework

The 3M™ Adhesive Transfer Tape 468MPF provides good adhesion to metal and high surface energy plastics. 3M™ High Performance Acrylic Adhesive 200MP delivers excellent shear strength to resist slippage and edge lifting. The tape is temporarily repositionable for placement accuracy, and also performs well after exposure to humidity and hot/cold temperatures. The clear polyester liner allows for easy inspection of parts.

The 3M™ Adhesive Transfer Tape 468MPF features a 5 mil (0.13 mm) thick adhesive for applications such as splicing and laminating procedures using metals and HSE plastics. The thicker calliper adds wet-out capability for surfaces where adhesion may be compromised by slight textures or irregularities. This high-performance adhesive is delivered on a clear, high-strength 2.0 mil(0.05 mm) polyester (PET) film liner, which is excellent for rotary processing of graphic and die cut parts. This adhesive transfer tape also resists solvents, humidity, and moisture, as well as temperatures up to 400°F/204°C for short periods.

Suggested applications
  • Long-term bonding of graphic nameplates and overlays (“subsurface” printed polycarbonate or polyester) specifically to textured metal and high surface energy plastics
  • Bonding metal nameplates and rating plates in the aerospace, medical and industrial equipment, automotive, appliance and electronics markets
  • Bonding graphic overlays for membrane switches and for bonding the complete switch to the equipment surface

Typical Properties