| Код ТН ВЭД | 763924 |
Как аккредитованный завод 3M 433 Premium Performance Aluminum Foil Tape, мы соблюдаем строгие протоколы качества - каждая партия подвергается строгим испытаниям для обеспечения последовательных стандартов эффективности и безопасности.
| Упаковка | One roll of 3M 433 Premium Performance Aluminum Foil Tape, individually shrink-wrapped on a cardboard core with label. |
| Погрузка контейнера (20-футовый контейнер) | 20′ FCL loaded with palletized 3M 433 Premium Performance Aluminum Foil Tape, shrink-wrapped, secured, and distributed evenly for ocean transport. |
| Доставка | 3M 433 Premium Performance Aluminum Foil Tape is generally non-hazardous and not regulated for transport by DOT, IMDG, or IATA. It ships as general cargo via ground, air, or ocean. Use standard packaging, keep dry, and avoid extreme temperatures. No special labels or placards are required. |
| Хранение | Store 3M 433 Aluminum Foil Tape indoors in its original packaging, in a clean, dry, well-ventilated area. Maintain 16–27°C (60–80°F) with moderate humidity. Protect from direct sunlight, heat, moisture, dust, and ignition sources. Keep away from strong oxidizers, acids, and solvents. Keep containers closed and upright. Rotate stock and follow SDS/local regulations. |
| Срок годности | Shelf life is 24 months from date of manufacture when stored at 70°F (21°C) and 50% relative humidity in original packaging. |
Конкурентоспособные цены на ленту из алюминиевой фольги 3M 433 Premium Performance, которые соответствуют вашему бюджету - гибкие условия и индивидуальные котировки для каждого заказа.
Для получения образцов, цен или более подробной информации свяжитесь с нами по адресу +8618136850665 или отправить по почте admin@ascent-chem.com.
Мы ответим вам как можно скорее.
Телефон: +8618136850665
Электронная почта: admin@ascent-chem.com
Гибкие условия оплаты, конкурентоспособные цены, первоклассное обслуживание — обращайтесь прямо сейчас!
3M 433 Premium Performance Aluminum Foil Tape is constructed from a dead-soft aluminum foil backing, a high-shear acrylic pressure-sensitive adhesive system, and a paper release liner. The backing is manufactured in a dead-soft temper to reduce elastic springback after forming; this mechanical distinction is central to its use on folded seams, riveted joints, and cylindrical ductwork. Standard roll formats are supplied in widths from 6.4 mm (0.25 in) to 914 mm (36 in) and in log lengths commonly listed as 54.8 m (60 yd). Typical physical property data published for this product family give a nominal backing thickness of 0.05 mm (2.0 mil) and a nominal total tape thickness of 0.11 mm (4.5 mil), with manufacturing tolerances in the range of ±0.02 mm (±0.8 mil) depending on adhesive coat weight and liner construction. The acrylic PSA is formulated for high initial peel on stainless steel and galvanized steel, while the foil backing provides a radiant-heat-reflective surface and a service temperature envelope from -40 °C to 149 °C (-40 °F to 300 °F) after proper application and dwell.
Physical property statements for 3M 433 are governed by standard pressure-sensitive tape test methods. The values in the following table represent the commonly reported numerical envelope for production lots; final lot-specific certificates and current manufacturer technical data take precedence over generalized ranges. Peel adhesion values are sensitive to substrate roughness, dwell time, and surface energy. Tensile and elongation values are measured on the foil-adhesive composite, not on the foil alone.
| Property | Test method | Representative value |
| Backing thickness | ASTM D3652/D3652M-20 | 0.05 mm (2.0 mil) nominal |
| Total tape thickness | ASTM D3652/D3652M-20 | 0.11 mm (4.5 mil) nominal; ±0.02 mm (±0.8 mil) typical |
| Peel adhesion to stainless steel | ASTM D3330/D3330M-02(2021) | 55–75 oz/in (60–82 N/100 mm) |
| Tensile strength | ASTM D3759/D3759M-05(2019) | 21–28 lb/in (368–490 N/100 mm) |
| Elongation at break | ASTM D3759/D3759M-05(2019) | 5–8% |
| Service temperature range | manufacturer thermal endurance data | -40 °C to 149 °C (-40 °F to 300 °F) continuous |
| Minimum application temperature | manufacturer application guidance | 10 °C (50 °F) on nonporous substrates |
General-purpose aluminum foil tapes are often produced with hard-tempered aluminum backings and lower coat-weight adhesive systems. These products are acceptable for temporary sealing and masking but exhibit springback on 90° bends and may lift from riveted or corrugated panels during thermal cycling. 3M 433 uses a dead-soft foil backing that has been annealed to reduce yield strength; the tape can be pressed into seams without the fracture lines observed in hard-tempered foil. The acrylic adhesive is a high-shear formulation rather than a utility-grade acrylic. This results in higher peel adhesion on stainless steel and galvanized steel, improved shear resistance at elevated temperatures, and reduced adhesive ooze during rotary die cutting.
The acrylic PSA used in 3M 433 is a crosslinked acrylate copolymer. Its peel behavior is rate-dependent: high-speed peel produces higher force because the adhesive dissipates energy in the viscoelastic plateau; low-speed peel allows relaxation and lower force. At temperatures approaching 149 °C, the loss tangent increases and shear creep compliance rises; sustained shear loads that are acceptable at 23 °C may produce cohesive failure. Repeated thermal cycling between -40 °C and 121 °C can create interfacial strain at aluminum-to-steel joints because of differences in coefficient of thermal expansion. The dead-soft foil backing reduces springback, but it does not eliminate the need for wipe-down, rolling, and full adhesive wet-out before thermal exposure.
Silicone-adhesive aluminum foil tapes such as 3M 438 and 3M 439 are rated for higher continuous temperatures, typically above 260 °C, and are used for high-temperature masking and curing operations. They are not interchangeable with 3M 433 when silicone contamination is a process risk. In paint preparation areas, free silicone from release liners or adhesive systems can cause surface defects; the acrylic PSA of 3M 433 is specified where silicone-free construction is required. The trade-off is a lower continuous service ceiling of 149 °C (300 °F), above which the acrylic adhesive softens and may undergo cohesive failure under load.
3M 433 is converted on shear-slitting lines with hardened steel blades; the principal observed failure modes in narrow-roll conversion are edge burr formation, foil flaking, and telescoping when web tension is not reduced below the yield point of the dead-soft foil. Slit rolls below 12.7 mm (0.5 in) benefit from interleaf tension control because the annealed backing does not resist lateral movement as effectively as harder foil tapes. On application lines for HVAC duct fabrication, roll tension is kept below levels that would stretch the foil; manual application with a pressure roller improves wet-out on galvanized steel but does not replace substrate cleaning.
Substrate preparation follows the standard cleanliness hierarchy for pressure-sensitive adhesive bonding: dry, free of dust, oil, wax, and corrosion products. For nonporous metals, cleaning with a 50:50 isopropyl alcohol/water solution is common; the surface is allowed to flash dry completely before tape application. Adhesion to raw aluminum can be lower when the oxide layer is friable; light abrasion followed by solvent wiping improves bond formation. The minimum application temperature for the acrylic PSA is 10 °C (50 °F). Below this threshold, adhesive wet-out is suppressed, and peel-strength falloff is observed even when the tape is later brought to room temperature.
Full adhesion development is time-dependent. Initial peel values measured after 20 min dwell are lower than 24 h dwell values. Load-bearing applications should be qualified after full cure at 23 °C (73 °F) and 50% RH. In production environments, heating the completed bond to 40–50 °C (104–122 °F) for 1–2 h accelerates wet-out, but the exact thermal cycle should be verified on the production substrate.
On production-scale HVAC duct lines, edge lifting has been observed when the tape is applied over galvanized surfaces still carrying drawing lubricant or light oil. Wiping with 50:50 isopropyl alcohol/water and allowing flash-drying reduces this failure mode. Batch-to-batch adhesive coat-weight variation is controlled within normal converting tolerances; changes in total thickness of ±0.02 mm are not usually detrimental to duct sealing but can affect kiss-cutting depth on rotary die lines.
In HVAC duct construction, 3M 433 is applied to longitudinal seams, transverse joints, and flange edges on galvanized sheet metal and rigid fiberglass duct board. Joint leakage performance is determined by the complete duct assembly rather than by the tape alone; conformance with SMACNA pressure-class leakage limits requires system-level testing. The tape is also used in general industrial sealing, bundling, masking, and temporary repair of thermal insulation jackets. It is not a substitute for mechanical fasteners or welded seams where structural load transfer is required.
Storage temperature and moisture control influence the conversion and application performance of 3M 433. The product should be stored in original packaging at 16–27 °C (60–80 °F) and 40–60% RH. Under these conditions, a shelf life of 18 months from date of shipment is typical for acrylic foil tapes in this class. Storage outside this envelope can alter release-liner wetting, increase adhesive flow, or cause foil edge oxidation. Rolls should be kept on end rather than suspended by the core to prevent core deformation and telescoping.
The aluminum foil backing has negligible water-vapor transmission if the foil is continuous and pinhole-free; however, the acrylic adhesive edge and the adhesive-substrate interface are not hermetically sealed. In HVAC or insulation service, the tape is not a substitute for a continuous vapor retarder membrane unless the joint is fully lapped and mechanically secured. Long-term moisture ingress at the adhesive edge can produce aluminum oxide at the foil surface, increasing emissivity and reducing reflectivity.
The continuous bulk service temperature of 3M 433 is 149 °C (300 °F). At sustained temperatures above this value, shear strength declines and adhesive residue or cohesive failure may occur. Short excursions to 177 °C (350 °F) are sometimes tolerated only if verified by bond-strength retention testing on the actual substrate and geometry. The lower service limit is -40 °C (-40 °F). Below this temperature, the acrylic PSA becomes increasingly rigid; adhesion may remain intact, but peel and impact resistance are reduced. For cryogenic or aerospace vacuum applications, lot-specific testing is required, and published data for this specific configuration is limited.
The acrylic adhesive is softened by ketones, esters, aromatic hydrocarbons, and certain fuel blends. Continuous immersion in these solvents produces edge lifting and cohesive failure. Aliphatic hydrocarbons and water are less aggressive, but permanent immersion is not specified. Outdoor exposure should be considered a maintenance interval, not a permanent seal. The foil backing blocks ultraviolet radiation, but exposed adhesive edges and liner-removed joints can oxidize and lose peel over time unless protected by a mechanical overlap or exterior sealant.
Low-energy substrates—untreated polyethylene, polypropylene, and PTFE—do not provide sufficient surface energy for reliable long-term adhesion unless they are corona-treated, plasma-treated, or primed. Plasticized vinyl presents a different risk: plasticizer migration into the acrylic PSA can reduce shear strength and cause adhesive softening. Direct contact with plasticized PVC should be avoided unless compatibility testing is performed.
The aluminum foil backing is electrically conductive, but the acrylic adhesive is not formulated as a z-axis conductive layer. For EMI/RFI shielding seams where a continuous ground path is required, mechanical foil-to-foil overlap contact is necessary; adhesive-only contact does not establish a reliable low-resistance path. A through-plane conductive adhesive was not used in this product.
For applications in vacuum or cleanroom environments, standard acrylic PSA products can evolve low-molecular-weight species under elevated temperature and reduced pressure. If the application requires total mass loss below 1.0% and collected volatile condensable material below 0.1% per ASTM E595-15, lot-specific testing is required because published data for this specific configuration is limited. The paper release liner also contributes particulate matter if introduced into cleanroom assembly areas.
| Reference | Scope | Verification requirement |
| RoHS Directive 2011/65/EU as amended by (EU) 2015/863 | Restriction of lead, mercury, cadmium, hexavalent chromium, PBB, and PBDE | Article-level supplier declaration required for each roll split. |
| REACH Regulation (EC) No 1907/2006 | Candidate-list SVHC communication and reporting | Verify against the current SVHC candidate list at the time of shipment. |
| FDA 21 CFR 175.105 | Indirect food-contact adhesive | Not assumed for all export grades; roll-specific confirmation is required. |
| UL 723 / ASTM E84 | Surface burning characteristics | Not assumed for all configurations; confirm listing status for the specific product width and lot. |
Adhesion to alkyd-painted surfaces, powder-coated finishes, and heavily oxidized metals is lower than on clean stainless steel or galvanized steel. Bond-strength retention after thermal aging is substrate-dependent; powders may outgas at elevated temperature and create a weak boundary layer. For any production application, the tape should be qualified on the actual substrate with the same surface preparation, dwell time, and thermal history used in manufacturing. Where a continuous submerged seal, structural load transfer, or a UL 723-classified duct closure is required, 3M 433 is not specified as the sole sealing element.