Leo Tools Ltd.
3M 93020LE Clear Polyester Tape 18mm x 55m 8 Mil | High Strength Double Coated Adhesive
3M 93020LE Clear Polyester Tape 18mm x 55m 8 Mil | High Strength Double Coated Adhesive
SKU:300000835
Low stock: 5 left
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Description
3M™ Double Coated Tape 93020LE is a high-performance double-sided transfer tape designed for strong and durable bonding in industrial applications. It features excellent anti-lifting properties and delivers reliable adhesion to a wide range of similar and dissimilar materials, including metals, plastics, glass, paper, and painted surfaces. This advanced adhesive tape provides strong initial tack, with bond strength that increases over time and with heat exposure. It also offers excellent resistance to moisture, humidity, and chemicals, ensuring long-lasting performance in demanding environments. Suitable for a wide temperature range, it is ideal for professional bonding and mounting applications across multiple industries.
Key Features:
- Double-coated transfer tape for strong and reliable bonding
- Excellent anti-lifting performance for secure adhesion
- Bonds to metals, plastics, glass, paper, and painted surfaces
- High initial tack with increasing bond strength over time
- Resistant to chemicals, moisture, and humidity
- Performs across a wide temperature range (4°C to 148°C / 40°F to 300°F)
- Suitable for both similar and dissimilar material bonding
- Ideal for industrial and general-purpose applications
What's Included:
- 1 Roll of 3M™ Double Coated Tape 93020LE
Specifications:
| Specifications | Details |
|---|---|
| Product Name | 3M™ Double Coated Tape 93020LE |
| Product Type | Double-Coated Transfer Tape |
| Adhesive Type | High-Performance Acrylic Adhesive |
| Application | Bonding, Mounting, Industrial Assembly |
| Compatible Materials | Metals, Plastics, Glass, Paper, Painted Surfaces |
| Initial Adhesion | Very High |
| Anti-Lifting Property | Excellent |
| Resistance | Moisture, Humidity, Chemical Resistant |
| Temperature Range | 4°C to 148°C (40°F to 300°F) |
| Bond Strength Behavior | Increases Over Time and Temperature |
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