3M™ VHB™ Tape 5962F
- Double sided acrylic foam tape
- 1.6 mm thickness
- Bonding to multiple substrates
Product Description
3M VHB™ Tape 5962F is a high-strength, double-sided acrylic foam tape designed for demanding bonding applications where reliable adhesion to low surface energy (LSE) plastics, powder-coated paints, and mixed-material assemblies is required. It combines the proven durability of 3M VHB™ technology with specialized adhesive performance for substrates that are traditionally difficult to bond, delivering strong, long-lasting bonds in both indoor and outdoor environments.
3M VHB™ Tape 5962F features a 1.6 mm (63 mil) thick black acrylic foam core with a high-performance acrylic adhesive on both sides, engineered to provide excellent adhesion to a wide range of materials including LSE plastics, metals, glass, and coated surfaces. The viscoelastic foam core delivers stress relaxation, impact resistance, and long-term durability while maintaining bond integrity under vibration, thermal expansion, and dynamic loads.
The tape provides excellent resistance to moisture, UV exposure, and environmental weathering, ensuring reliable performance over time in challenging conditions. It also enables cleaner, faster assembly processes by replacing mechanical fasteners such as screws, rivets, and bolts in many applications, helping reduce fabrication time and improve aesthetics.
Product Key Features
- Strong Adhesion to LSE Materials - specifically designed to bond effectively to low surface energy plastics and powder-coated surfaces.
High-Strength Durable Bond - delivers reliable permanent bonding across a variety of substrates including metals, glass, and coated materials.
Viscoelastic Acrylic Foam Core - absorbs and distributes stress caused by vibration, impact, and thermal expansion differences.
Thin, Conformable Construction - 0.6 mm foam core adapts well to smooth and moderately irregular surfaces for clean bonding lines.
Multi-Surface Adhesive System - bonds effectively to plastics, aluminum, stainless steel, glass, and painted or coated surfaces. - Environmental Resistance - excellent resistance to UV, moisture, solvents, and outdoor weathering conditions.
Fast and Clean Assembly - eliminates drilling, welding, grinding, and mechanical fastening operations in many applications.
Applications
3M VHB™ Tape 5962F is suited for industrial bonding and attachment applications requiring durable adhesion, temperature resistance, and long-term environmental performance.
- Suitable for bonding powder-coated panels, trims, and signage components
- Ideal for bonding plastic housings, enclosures, and mixed-material assemblies
- Used in applications requiring clean appearance and replacement of mechanical fasteners
Technical Specifications
Additional Information
3M® VHB®Tape 5962F
3M VHB™ Tape 5962F thick black double-coated acrylic foam tape with PE film liner. The modified acrylic adhesive on both sides bonds to a broad range of high, medium and medium/low surface energy substrates including metals, glass and a wide variety of plastics and paints, including many powder-coated paints. The very conformable foam provides good contact between substrates even when they are slightly mismatched.
Note: Property values shown are typical and not intended for specification. Verify suitability under your geometry, dispense method, and cure profile.

Key Features
- Fast and easy to use
- Invisible fastening to keep surfaces smooth
- Allows the use of thinner, lighter-weight, and dissimilar materials
- Eliminates drilling, grinding, refinishing, screwing, welding and associated re-work
- Pressure-sensitive adhesive bonds on contact to provide immediate handling strength
Processing Summary
Typical Physical Properties
| Property | Typical value | Test method |
|---|---|---|
| Color | Black | |
| Adhesive Type | Modified Acrylic | |
| Density | 590 kg/m³ | ASTM D3574 |
| Adhesive Carrier | Conformable Acrylic Foam | |
| Total Tape Thickness | 1.6 mm | ASTM D3652 |
| Thickness Tolerance | ±10 % | |
| Liner | Red PE Film 0.13 mm | |
| 90 Peel Adhesion | 39 N/cm | ASTM D330 |
| Normal Tensile | 550 kPa | ASTM D897 |
| Overlap Shear Strength | 480 kPa | ASTM D1002, ISO 4587 |
| Static Shear | 750 g @ 23°C , 500 g @ 66°C , 250G @ 93°C | |
| Minimum Application Temperature | 10 °C | |
| Short Term Temp Resistance | 149 °C | |
| Long Term Temp Resistance | 93 °C |
The manufacturing date is available on all 3M™ VHB™ Tapes as the lot number, typically marked on the core or on a label on the outer roll lap. The lot number, typically a 4 digit code, is a Julian date (Y D D D). The first digit refers to the year of manufacture, the last 3 digits refer to the days after January 1.
Example: A lot number of 7266 (or 17266) would translate to a date of manufacture of Sept. 23 (266th day of year) in 2017.
Surface Preparation and Application Techniques
Proper surface preparation and application technique are critical to achieving the maximum bond strength, durability, and long-term performance of 3M VHB™ Tape 5962F across a wide range of industrial substrates and operating conditions.
Exceptions that may require additional surface preparation include:
• Heavy Oils: A degreaser or solvent-based cleaner may be required to remove heavy oil or grease from a surface and
should be followed by cleaning with IPA/water.
• Abrasion: Abrading a surface, followed by cleaning with IPA/water, can remove heavy dirt or oxidation and can
increase surface area to improve adhesion.
• Adhesion Promoters: Priming a surface can significantly improve initial and ultimate adhesion to many materials such
as plastics and paints.
• Porous surfaces: Most porous and fibered materials such as wood, particleboard, concrete, etc. need to be sealed to
provide a unified surface.
• Unique Materials: Special surface preparation may be needed for glass and glass-like materials, copper and copper
containing metals, and plastics or rubber that contain components that migrate (e.g. plasticizers).
*Note: Initial tape application to surfaces at temperatures below these suggested minimums is not suggested because the adhesive becomes too firm to adhere readily. Ideally, all substrates and tape should be conditioned above the minimum application temperature in covered, weatherproof conditions until it is verified the substrates are at or above the minimum temperature. Once properly applied, low-temperature holding is generally satisfactory.
Bond Build Rate

After application, the bond strength will gradually increase as the adhesive flows onto to the surface (also referred to as “wet out”). The bond build rate will depend on both tape and substrate, but generally, at room temperature, approximately 50% of ultimate bond strength will be achieved after 20 minutes, 90% after 24 hours, and 100% after 72 hours. Adhesive flow is faster at higher temperatures and slower at lower temperatures. Ultimate bond strength can be accelerated (and in some cases bond strength can be increased) by exposure to elevated temperature (e.g. 66°C [150°F] for 1 hour). This can provide better adhesive wet out onto the substrates. Abrasion (~180 grit), or the use of primers/adhesion promoters, can also increase both bond strength as well as the bond build rate.
Tips and Troubleshooting
| Issue | Recommended Action |
|---|---|
| Adhesion |
Adhesion to the substrate is critical to achieving high bond strength. Adhesives must flow onto the substrate surfaces in order to achieve an intimate contact area and allow the molecular force of attraction to develop. The degree of flow of theadhesive on the substrate is largely determined by the surface energy of the substrate. |
| Tape Usage |
Use the right amount of VHB™ Tape to handle the expected stresses. Because 3M™ VHB™ Tapes are viscoelastic by |
| Tape Thickness |
Achieving good contact is also important. The necessary thickness of tape depends on the rigidity of substrates as well |
| Thermal Expansion/Contraction |
3M™ VHB™ Tapes perform well in applications where two bonded surfaces may expand and contract at different rates. |
| Bond Flexibility |
While an advantage for many applications where allowing differential movement is a benefit, the tape bonds are |

