| Код ТН ВЭД | 561114 |
Как аккредитованный завод 3M 3051 Low Tack Paper Tape, мы соблюдаем строгие протоколы качества - каждая партия подвергается строгим испытаниям для обеспечения последовательных стандартов эффективности и безопасности.
| Упаковка | Supplied in a cardboard dispenser box containing twelve rolls of 3M 3051 Low Tack Paper Tape, each roll individually wrapped. |
| Погрузка контейнера (20-футовый контейнер) | 3M 3051 Low Tack Paper Tape loaded in a 20′ FCL container, palletized, secured, and braced for safe ocean shipment. |
| Доставка | 3M 3051 Low Tack Paper Tape is not classified as dangerous goods. It ships as non-hazardous general freight by ground, air, or sea. No UN number, hazard class, packing group, special labels, or placards required. Store dry, away from extreme heat and sunlight. |
| Хранение | Store 3M 3051 Low Tack Paper Tape in a cool, dry, well-ventilated area away from direct sunlight, heat, sparks, flames, and moisture. Keep in original packaging, sealed, clean, and dry; do not stack heavy items on rolls. Maintain recommended temperature 10–27°C and moderate humidity. Protect from contaminants, prolonged light, and physical damage. Rotate stock, use oldest first, and follow manufacturer instructions and local regulations. |
| Срок годности | Shelf life is 24 months from date of manufacture when stored at 21°C (70°F) and 50% relative humidity. |
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The 3M 3051 Low Tack Paper Tape is a tan crepe paper-backed pressure-sensitive masking tape engineered for applications requiring peel force below that of standard crepe paper masking grades. The product is identified by model number 3051 and is supplied in log rolls, slit rolls, and converted die-cut formats. Manufacturer documentation lists a nominal total thickness of 0.14 mm (5.5 mil) and a continuous service temperature not exceeding 93 °C. The pressure-sensitive adhesive is a rubber-resin system formulated for low peel adhesion to stainless steel: approximately 0.77 N/cm (7 oz/in) when tested according to ASTM D3330/D3330M-04(2018) Test Method A. This value is less than one half of the typical general-purpose crepe paper masking tape range of 2.0 N/cm to 3.0 N/cm, which is the primary difference from conventional masking tapes used for heavyweight drop cloths and rough surfaces.
Surface preparation for the 3051 tape includes removal of dust, oil, and loose particulates. The pressure-sensitive adhesive develops bond through pressure rather than solvent evaporation. Lamination with a rubber roller or hand pressure in the range of 0.1 MPa to 0.3 MPa improves wet-out on textured surfaces. Cleaning with 2-propanol or a naphtha wipe can improve initial adhesion on oily substrates, but solvent residues can soften rubber adhesives; the surface must be dry before application.
General-purpose crepe masking tapes use higher-tack rubber-resin adhesives to hold polyethylene film, masking paper, and heavy protective materials. Those adhesives generate peel forces that can exceed the cohesive strength of weak paint films, decorative wallcoverings, and partially cured plasters. The 3051 low-tack adhesive reduces this failure mode by lowering the force transmitted to the substrate during removal. However, the low peel force also limits the tape’s ability to suspend heavy sheeting or remain adhered during high air movement in spray booths. It is therefore specified for light masking, delicate surface protection, and applications where the tape must be removed without lifting the underlying layer.
Compared with standard crepe paper masking tapes, the 3051 grade differs in unwind behavior and edge conformity. The saturated crepe paper backing has a controlled elongation at break of 7%, which permits stretching during curved surface application while maintaining a relatively sharp paint line. The lower adhesive coat weight reduces adhesive bleed at slit edges, a common cause of edge build-up on slitting blades. In converting operations, this reduces the frequency of blade cleaning compared with higher-coat-weight general-purpose tapes.
Measured physical properties reported in the manufacturer’s technical data sheet include total thickness 0.14 mm (5.5 mil), peel adhesion to steel 0.77 N/cm (7 oz/in) per ASTM D3330/D3330M-04(2018), tensile strength 350 N/100 mm (20 lb/in), and elongation at break 7% per ASTM D3759/D3759M-05(2019). The product is intended for short-term indoor masking; published data for long-term exterior exposure of this specific configuration is limited. The paper backing absorbs water and organic solvents, which can alter dimensional stability and peel characteristics. In paint operations, water from waterborne coatings can wick into the crepe paper and cause edge lift on non-porous substrates; this mechanism is reduced but not eliminated by the saturated backing.
| Property | Test Method | 3M 3051 Typical Value | General-Purpose Crepe Masking Tape Typical Range |
|---|---|---|---|
| Total thickness | ASTM D3652/D3652M-93(2020) | 0.14 mm (5.5 mil) | 0.13 mm–0.17 mm |
| Peel adhesion to steel | ASTM D3330/D3330M-04(2018) Test Method A | 0.77 N/cm (7 oz/in) | 2.0 N/cm–3.0 N/cm |
| Tensile strength at break | ASTM D3759/D3759M-05(2019) | 350 N/100 mm (20 lb/in) | 350 N/100 mm–440 N/100 mm |
| Elongation at break | ASTM D3759/D3759M-05(2019) | 7% | 8%–10% |
| Service temperature | Manufacturer data | ≤93 °C | ≤93 °C typical for rubber-resin systems |
Fresh alkyd films, low-PVC waterborne wall paints, and factory-applied decorative foils often fail cohesively under standard tape removal forces. For those substrates, the peel adhesion of the masking tape must remain below the coating’s adhesion to the substrate. The 3051 grade provides a lower initial peel force, but peel adhesion builds with dwell time and temperature. A tape that removes cleanly after 1 h may lift coating after 24 h at 40 °C because the rubber-resin adhesive flows and develops more intimate contact with the surface. Users should establish safe dwell times by testing the actual coated substrate in a 180° peel test according to ASTM D3330/D3330M-04(2018) at the expected removal speed.
Masking of waterborne acrylic films requires attention to coating dry time and film coalescence. The surface may be dry-to-touch while the bulk film still has low cohesive strength. Application of any tape, including low-tack paper tape, can disturb the film if it is below the minimum recoat interval specified by the coating manufacturer. The tape should not be applied until the coating has reached the handling stage defined by the coating data sheet; no universal numerical interval is valid because dry time is dependent on film thickness, temperature, air movement, and humidity.
During automated profile masking of extruded aluminium components, the low tack adhesive reduces adhesive transfer to the profile after infrared flash-off. The crepe backing’s tensile strength of 350 N/100 mm is sufficient for linear runs, but shingled joints at complex contours require forming temperatures above 10 °C to prevent paper splitting. Slitting quality affects lay-up performance; edge burrs and high roll tension can increase unwind force and cause web breaks. Incoming rolls should be inspected for core collapse, edge weld, and adhesive bleed. Conditioning before converting at 23 °C and 50% relative humidity according to ISO 554:1976 stabilises paper dimensions and reduces curl.
Low-energy substrates with surface energy below 38 mN/m, such as untreated polypropylene, high-density polyethylene, and fluoropolymer panels, will not develop sufficient peel adhesion. The tape may lift under minimal handling. Corona-treated or flame-treated polymer surfaces above 40 mN/m improve wet-out. Surface energy can be checked by the wetting tension method of ASTM D2578-23. On such substrates, peel adhesion is typically lower than on steel, and the tape may not remain in place under even moderate handling. Application-specific adhesion testing on the actual part geometry is required before production use.
Compliance status is specific to the purchased roll configuration, width, and converting source. 3M 3051 is not offered as a direct food-contact tape. If the tape is used in packaging that may indirectly contact food, the supplier should be asked for a regulatory data sheet against FDA 21 CFR 175.105 or 21 CFR 176.170 as applicable to the intended article. REACH and RoHS declarations are not uniform across all slitting and packaging variants; a product stewardship request should specify the exact stock code and roll format.
The product’s paper backing absorbs moisture from high-humidity environments. Storage outside the range of 10 °C to 32 °C and 30% to 70% relative humidity can cause dimensional expansion, curl, or accelerated adhesive aging. Rolls should be stored in the original polyethylene packaging until immediately before use and should not be exposed to direct sunlight or ultraviolet sources for extended periods. The adhesive system is based on rubber-resin chemistry and can degrade under ozone and ultraviolet exposure, leading to yellowing, edge lift, and clean-removal failure.
In powder coating operations, 3M 3051 is limited to room-temperature surface protection and pre-bake masking. Typical powder cure schedules of 180 °C to 200 °C exceed the tape’s 93 °C service limit, causing adhesive charring, backing embrittlement, and clean-removal failure. For high-temperature masking, a polyester film tape with silicone adhesive is required. The 3051 grade is also not suitable for prolonged ultraviolet exposure, outdoor weathering, or applications involving immersion in solvents, because the crepe paper wicks solvent and the rubber-resin adhesive can swell.
The dominant failure mode observed on paint lines is not always adhesive transfer but edge lift caused by solvent evaporation gradients at the tape edge. When solvent-borne basecoat is applied by HVLP spray, solvent can wick under the tape edge and soften the adhesive. A low tack tape is more susceptible to edge lift in this scenario because its initial adhesion is low; users often seal the edge with a fingertip or roller after application. For crisp separation, the tape edge should be burnished to the substrate with a plastic squeegee, but excessive pressure can force adhesive outward and create adhesive heads along the paint line.
In sheet-to-sheet laminating applications, the tape is applied by pneumatic nip rollers at line speeds up to 15 m/min without web breaks, provided web tension is below 10 N/cm width. Higher speeds or tensile loads can elongate the crepe backing and produce wavy masking lines. Slitting to widths below 12 mm requires reinforced core support to prevent telescoping. The backing is a saturated crepe paper that reduces loose fiber generation compared with unsized kraft paper, but it does not eliminate particulate contamination; therefore the tape is not specified for cleanroom or semiconductor use.
Unlike repositionable vinyl tapes or low-tack polyester film tapes, the 3051 paper backing is opaque and participates in solvent and moisture exchange with the substrate. It is not a substitute for polyimide tape in high-temperature electronics masking, for transparent film tape in UV-cure applications, or for silicone-adhesive polyester tape in powder coating cure cycles. Where peel force below 1.0 N/cm is required and the surface can tolerate a paper-backed mask, the 3051 grade fits indoor light masking, bundling, and temporary surface protection. For any production application, incoming lot peel adhesion and dwell-time compatibility should be verified against the specified standard and the actual substrate.