Scotch® ATG Transfer Tape 969
Harmonization Code : 3506.10.00.00 | Prepared glues and other prepared adhesives, not elsewhere specified or included; products suitable for use as glues or adhesives, put up for retail sale as glues or adhesives, not exceeding a net weight of 1 kg
Main features
- Provides immediate and permanent bond
- Designed to adhere to a variety of substrates
- Conforms easily to curves and contours
Product Description
3M™ Scotch® ATG Adhesive Transfer Tape 969 is a high-adhesion adhesive transfer tape designed to deliver immediate, permanent bonding across a wide variety of materials. Featuring 3M™ Acrylic Adhesive 300, it provides excellent initial tack, good shear holding power, and reliable performance on both high and low surface energy substrates. Reverse wound on a 1-inch core, it is engineered for use with Scotch® ATG applicators, ensuring fast, clean, and controlled application.
Product Key Features
- Creates an instant, permanent bond on contact
- Uses 3M™ Acrylic Adhesive 300 for strong performance on challenging surfaces
- Maintains bond integrity under stress and load
- Bonds well to metals, coated papers, fabrics, foams, and both HSE and LSE plastics
- Adapts easily to curves, contours, and moderately textured materials
- Provides good resistance to UV exposure, solvents, and humidity
- Reverse wound design for use with Scotch® ATG applicators for neat, efficient dispensing
Applications
- Sealing pocket folders and envelopes
- Bonding mat boards, picture frames, and dust covers
- Splicing paper, films, and foils
- Mounting posters, promotional materials, and displays
- General bonding of plastics, glass, painted surfaces, and glossy materials
- Applications in environments with humidity or sunlight exposure
Technical Specifications
| General Properties | |
|
Color
Color
The color |
Translucent |
|
Total Thickness
Total Thickness
Total thickness is taking into account all the films, coatings, adhesives, release liners and special layers and is the maximum thickness of a film or tape. |
127 μm |
