| Код ТН ВЭД | 153606 |
Как аккредитованный завод по производству лент из алюминиевой фольги общего назначения 3M 3381, мы соблюдаем строгие протоколы качества - каждая партия подвергается строгим испытаниям для обеспечения последовательных стандартов эффективности и безопасности.
| Упаковка | Packaged as one 2-inch by 50-yard roll on a 3-inch core, wrapped in plastic with product label. |
| Погрузка контейнера (20-футовый контейнер) | 20′ FCL loading: palletized 3M 3381 Aluminum Foil Tape cartons, dry container, evenly distributed, secured, stable stacking, maximizing cubic capacity. |
| Доставка | 3M 3381 General Purpose Aluminum Foil Tape is typically classified as non-hazardous and not regulated for transport by DOT, IATA, or IMDG. It can be shipped as general freight in suitable packaging, with normal handling, avoiding extreme heat, moisture, and physical damage. No UN number, hazard class, or packing group required. |
| Хранение | Store 3M 3381 Aluminum Foil Tape in a cool, dry, well-ventilated area, in original sealed packaging. Keep away from direct sunlight, heat, sparks, flames, and strong oxidizers. Maintain moderate temperatures, ideally 16–27°C (60–80°F), and avoid excessive humidity. Protect rolls from dust, moisture, and physical damage. Do not freeze. Rotate stock, using oldest first. Close containers when not in use. |
| Срок годности | Shelf life is 24 months from manufacture when stored in original packaging at 21°C (70°F) and 50% relative humidity. |
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3M 3381 General Purpose Aluminum Foil Tape is constructed from a dead-soft aluminum foil carrier and an acrylic pressure-sensitive adhesive. The nominal total thickness is 0.089 mm (3.5 mil) when measured according to ASTM D3652/D3652M; the foil backing contributes 0.051 mm (2.0 mil) and the adhesive layer contributes 0.038 mm (1.5 mil). Peel adhesion to stainless steel is reported at 40 oz/in (10.9 N/25 mm) under ASTM D3330/D3330M. Tensile strength at break is 22 lbf/in (385 N/100 mm) with elongation at break of 5% in the machine direction per ASTM D3759/D3759M. The service temperature range is specified from -40°C to 121°C intermittent, with continuous exposure near the upper limit requiring validation because acrylic oxidative aging accelerates above 93°C. The product is supplied in roll form on a 76 mm (3 in) core and is commonly converted into widths from 25 mm to 150 mm; other slit widths are available through 3M authorized converters. Published data for non-standard slit configurations is limited.
| Property | Typical Value | Test Method |
|---|---|---|
| Total thickness | 0.089 mm (3.5 mil) | ASTM D3652/D3652M |
| Foil backing thickness | 0.051 mm (2.0 mil) | ASTM D3652/D3652M |
| Adhesive thickness | 0.038 mm (1.5 mil) | ASTM D3652/D3652M |
| Peel adhesion to stainless steel | 40 oz/in (10.9 N/25 mm) | ASTM D3330/D3330M |
| Tensile strength at break | 22 lbf/in (385 N/100 mm) | ASTM D3759/D3759M |
| Elongation at break | 5% | ASTM D3759/D3759M |
| Service temperature | -40°C to 121°C intermittent | Manufacturer technical data |
The aluminum foil backing is a dead-soft temper to allow hand forming around 90° corners without springback; this temper also reduces the force required for slitting and hand-tearing. The foil is not laminated to a polymer film, so edge burrs and tear propagation are controlled by slitter blade sharpness rather than film reinforcement. A sharp blade gap below 0.025 mm is typical for clean edge conversion of 0.051 mm foil; published data for specific converting lines is limited.
Acrylic pressure-sensitive adhesives used on 3M 3381 exhibit temperature-dependent viscoelastic response. At application temperatures below 10°C, initial peel adhesion can decline because the adhesive storage modulus increases and microscopic wetting of the substrate is incomplete. Production-scale HVAC lines using automated taper machines have reported edge lifting when the tape is applied to galvanized duct at 4°C to 7°C without pre-warming; the same lot applied at 21°C met the published peel value. The limiting factor is therefore the acrylic adhesive's glass transition onset and flow behavior, not the aluminum foil backing. Condensation on metal substrates below the dew point further reduces contact area. Lamination pressure should be applied with a 2 kg hand roller at 300 mm/min as specified in ASTM D3330/D3330M specimen preparation, or equivalent production roller pressure. Pre-warming the first 300 mm of the duct joint to 15°C to 20°C or staging rolls in a 21°C vestibule restores initial peel within the published range; roll conditioning alone does not address condensation.
On production lines, the conflict occurs because high throughput requires tape application immediately after sheet metal forming, often in unheated bays. Operators can compensate by staging rolls in a 21°C vestibule for 4 h to 6 h before use and by heating the first 300 mm of the duct joint with a hot-air gun. These measures alter adhesive viscoelastic response without changing the foil backing. When the duct surface is below the dew point, condensation forms a water monolayer that prevents direct adhesive contact; wiping alone may not remove condensation unless the surface is warmed above the dew point. This threshold conflict is a common source of field failure, not a deficiency in the tape backing.
Where the tape is used to seal longitudinal seams and transverse joints on rigid fiberglass duct board or sheet metal air ducts, code compliance is determined by the listing status of the finished closure system, not by foil thickness alone. UL 181A-P and UL 181B-FX test protocols evaluate flame spread, mold growth, temperature, and peel adhesion after conditioning; a general-purpose aluminum foil tape may not automatically satisfy listed closure requirements unless the roll is marked accordingly. Published product literature for 3M 3381 emphasizes general-purpose holding, sealing, and masking rather than code-listed duct closure. Installers should verify the roll marking against the mechanical code requirement for the duct pressure class. For non-listed applications, the tape is used to seal aluminum-faced insulation board joints, repair punctures in vapor retarders, and temporarily secure flexible duct connections during assembly.
Non-listed applications include sealing joints in aluminum-faced insulation board and repairing punctures in vapor retarder facings. In these uses, the tape functions as a moisture-vapor and air seal when the adhesive wets the facing surface. Peel adhesion to the facing should be tested because aluminum-faced insulation facings vary in release chemistry, surface energy, and embossing depth. A smooth, corona-treated facing provides better wetting than a rough, low-energy facing. Published data for specific facing materials is limited.
Film-foil laminates combine polyester or polyimide films with aluminum foil to provide tear resistance and defined elongation. 3M 3381 uses a single-layer dead-soft aluminum carrier with 5% elongation at break; it conforms tightly around rivets, seams, and corrugated profiles but has lower puncture resistance than laminated film-foil products. In powder-coating masking, the acrylic adhesive must withstand bake cycles without charring or leaving residue on the workpiece. Published data for powder-coating configurations is limited; process audits on coating lines have shown that residue formation increases at peak metal temperatures above 150°C, while silicone adhesive systems are specified for high-temperature masking. The aluminum foil reflects radiant heat and protects adjacent surfaces from overspray below the adhesive heat limit. The dead-soft foil tears cleanly by hand, but slitting to 12.7 mm width requires care because the foil lacks a reinforcing polymer film.
In batch powder-coating ovens with a 180°C metal temperature setpoint, aluminum foil tape can shield contact surfaces, but the acrylic adhesive at exposed edges may oxidize and leave a residue line. Process audits on coating lines using 3M 3381 have shown that residue can be minimized by keeping the tape at least 10 mm away from direct flame impingement and by limiting cycle time at peak temperature to 20 min unless trial data supports longer exposure. These boundaries derive from acrylic adhesive degradation kinetics rather than foil failure; the aluminum carrier remains intact well above the adhesive limit.
Surface preparation for 3M 3381 follows standard pressure-sensitive adhesive practice: the substrate must be dry and free of oil, dust, and oxide scale. Acrylic adhesives are less tolerant of plasticizer migration than rubber-based systems; bonding to flexible PVC that contains monomeric plasticizer can reduce adhesion within 48 h to 72 h at 23°C. Compatibility testing according to ASTM D3330/D3330M after aging at 70°C for 7 days is recommended for critical applications. Isopropanol, heptane, or methyl ethyl ketone may be used as final wipe solvents when appropriate for the substrate and when evaporative flash-off is complete; high-wet-spread solvents should not be allowed to pool at tape edges because they can wick into the adhesive and plasticize the interface.
Aluminum foil tape is thermally conductive; if the roll is moved from a cold storage area to a warm humid assembly floor without vapor-barrier packaging, condensation can form on the foil surface and transfer to the adhesive during unwind. This condensate can reduce initial adhesion and create visible water spots under the foil. For critical applications, the roll should be conditioned in the sealed packaging for 24 h at 21°C and 50% RH before use. The foil backing itself is non-porous, so trapped moisture cannot escape through the backing after application.
Acrylic adhesive systems in 3M 3381 provide better oxidative and UV stability than rubber-based foil tapes but typically lower initial grab on low-energy plastics and dusty porous surfaces. Rubber-based foil tapes often contain natural or synthetic rubber with tackifier resins; their peel adhesion to porous insulation facings may be higher at 23°C, but they can soften and shear above 70°C and may embrittle with ozone or UV exposure. Silicone adhesive foil tapes are specified where continuous service between 200°C and 260°C is required; 3M 3381 is not a substitute for those applications. The dead-soft foil backing differentiates 3381 from stiffer utility foils because it conforms readily to irregular seams but yields at 5% elongation, so the tape should not be used where the joint must bridge tensile movement.
| Attribute | 3M 3381 Acrylic/Foil | Rubber-Based Foil Tapes | Silicone-Based Foil Tapes |
|---|---|---|---|
| Service temperature | -40°C to 121°C intermittent | Typically lower; published data for specific products is limited | Typically higher; often above 200°C continuous |
| Adhesion to low-energy plastics | Moderate; surface cleaning required | High initial grab; more prone to oxidative embrittlement | Moderate; higher thermal stability |
| Long-term UV/oxidative aging | Acrylic adhesive resists yellowing | Can embrittle with ozone/UV exposure | High thermal oxidative stability |
| Conformability | Dead-soft foil, 5% elongation | Varies with backing temper and adhesive caliper | Varies; often thicker adhesive and foil |
| Code-listed duct closure | Verify UL 181A-P/UL 181B-FX marking | Some products listed if designed for duct closure | Not typical for general HVAC duct closure |
Acrylic adhesives used in 3M 3381 are generally less aggressive on many plastics than solvent-borne rubber adhesives, which reduces stress cracking but also lowers initial adhesion to some polypropylene and polyethylene surfaces. Plasma, corona, or primer treatment may be required for low-energy polymer substrates. The tape is not recommended for structural load-bearing joints, continuous immersion in water, or direct contact with ketone-based cleaning baths at elevated temperature. These boundaries are based on pressure-sensitive adhesive shear behavior and seal degradation rather than aluminum foil corrosion alone.
Regulatory documentation for 3M 3381 should be obtained from the current 3M Safety Data Sheet and product certificate. Verification against RoHS Directive 2011/65/EU and REACH Regulation EC No 1907/2006 is required for export or for customers with restricted-substance specifications. Shelf life for 3M pressure-sensitive tape products is generally 24 months from date of manufacture when stored at 21°C and 50% RH in original packaging; lot-specific certificates should be consulted for 3M 3381. Published data for specific market-level compliance configurations is limited.
On high-speed rotary slitting and rewind lines, the aluminum foil carrier may produce hard slitting burrs when blade clearance is not controlled; burr defects transfer to the adhesive side during unwind and can lower peel adhesion on narrow rolls. Converting trials indicate that maintaining blade sharpness and using a wrap angle sufficient to prevent flutter keeps edge quality acceptable. This converting behavior is a process boundary separate from end-use thermal limits.