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3M 33801 Premium Performance Aluminum Foil Tape

    • Название продукта: 3M 33801 Premium Performance Aluminum Foil Tape
    • Сайт Factroy: Округ Юду, Ганьчжоу, Цзянси, Китай
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    • Производитель: Ascent Petrochem Holdings Co., Limited
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    Спецификации
    Код ТН ВЭД 184990

    Как аккредитованный завод 3M 33801 Premium Performance Aluminum Foil Tape, мы соблюдаем строгие протоколы качества - каждая партия подвергается строгим испытаниям для обеспечения последовательных стандартов эффективности и безопасности.

    Упаковка и хранение
    Упаковка Carton contains 24 rolls; each 1-inch by 50-yard roll is individually wrapped and labeled 3M 33801.
    Погрузка контейнера (20-футовый контейнер) 20′ FCL container loaded with palletized cartons of 3M 33801 Premium Performance Aluminum Foil Tape, securely strapped and evenly distributed.
    Доставка 3M 33801 Premium Performance Aluminum Foil Tape is a non-hazardous, non-regulated article for transport. It can be shipped by ground, air, or sea under standard freight conditions. Use original packaging, protect from moisture and extreme heat, and label with product identification. No DOT, IATA, or IMDG special handling required.
    Хранение Store 3M 33801 Premium Performance Aluminum Foil Tape in its original sealed packaging in a cool, dry, well-ventilated area. Maintain 15–30°C (59–86°F) and 40–60% relative humidity. Protect from direct sunlight, heat, moisture, freezing, and incompatible chemicals. Keep away from ignition sources. Avoid crushing rolls. Rotate stock using FIFO and observe the manufacturer’s shelf-life recommendations.
    Срок годности Shelf life is 24 months from manufacture when stored unopened at 21°C (70°F) and 50% relative humidity.
    Бесплатная цитата

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    Запрос

    Получите бесплатную сметуAscent Petrochem Holdings Co., Limited

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    Сертификация и соответствие требованиям
    Более подробное введение

    3M 33801 Premium Performance Aluminum Foil Tape is a dead-soft aluminum foil carrier combined with a pressure-sensitive acrylic adhesive. The construction is specified where continuous service temperature, puncture resistance, and oxidation resistance exceed the practical limits of utility-grade foil tapes. The product is identified by 3M as model 33801 and is supplied in common width increments of 2 in, 3 in, and 4 in at a standard roll length of 150 ft; converters may produce additional slit widths from master logs under internal tolerance control. The foil is annealed to an O-temper dead-soft condition so that the tape conforms around riveted seams, transverse duct flanges, and insulation-cladding joints without spring-back fracture.

    Typical nominal values from published product data include a total tape thickness of 3.2 mil (0.081 mm) and a foil backing thickness of 2.0 mil (0.051 mm) when measured per ASTM D3652/D3652M. The adhesive side is protected in roll form by the foil face, and the product is normally self-wound. The aluminum carrier contributes an electrically conductive surface, while the acrylic adhesive provides bond to galvanized steel, stainless steel, aluminum sheet, and rigid insulation facings. The product is not specified for direct food contact or for continuous immersion in aggressive process fluids unless separately evaluated.

    What Standardized Test Methods Govern the Peel, Tensile, and Thickness Data?

    Performance values assigned to 33801 are screening data generated at 23 ± 2°C and 50 ± 5% relative humidity unless otherwise stated. Peel adhesion is characterized by ASTM D3330/D3330M using a stainless steel panel, a 180° peel angle, and a crosshead speed of 12 in/min (300 mm/min) after a 20 min dwell. The reported adhesion to stainless steel is approximately 45 oz/in (49 N/100 mm). Machine-direction tensile strength is determined under ASTM D3759/D3759M at 28 lb/in (490 N/100 mm) with a break elongation of 5%. The continuous temperature rating is -40°F to 250°F (-40°C to 121°C). Published data for this exact configuration in cryogenic or direct-immersion service is limited; the product should not be extrapolated beyond the manufacturer’s stated continuous temperature range.

    PropertyTest methodTypical value
    Total tape thicknessASTM D3652/D3652M3.2 mil (0.081 mm)
    Foil backing thicknessASTM D3652/D3652M2.0 mil (0.051 mm)
    Peel adhesion to stainless steelASTM D3330/D3330M45 oz/in (49 N/100 mm)
    Tensile strength at breakASTM D3759/D3759M28 lb/in (490 N/100 mm)
    Elongation at breakASTM D3759/D3759M5%
    Continuous service temperatureManufacturer thermal rating-40°F to 250°F (-40°C to 121°C)

    These typical values are not a purchase specification; current production lot certificates may vary within agreed statistical tolerances. Shear-adhesion failure temperature and static load performance for the acrylic adhesive are typically established by thermal ramp tests on stainless steel, but published lot-specific data for this exact product family is limited. Where code compliance is required in duct-closure applications, the tape is evaluated as part of the assembled duct enclosure under ASTM E84/UL 723 rather than as a standalone material.

    Production HVAC seam sealing uses the tape over longitudinal snaplock seams, Pittsburgh seams, and transverse duct flanges. On sheet-metal fabrication lines, the tape is pressed into the seam with a hand roller or an automated applicator head; separation of the foil from the adhesive at peel angles below 90° usually indicates insufficient consolidation pressure or surface contamination. Cleaned galvanized steel with a surface energy above 40 dyn/cm provides reproducible wet-out, while oiled or silicone-contaminated metal can depress peel below 10 oz/in. Because the acrylic adhesive builds significant final adhesion over 24 h, immediate hand-peel inspection is not the appropriate acceptance criterion.

    In aluminum sheath sealing over chilled water and low-pressure steam insulation, the tape is applied at cladding surface temperatures from 4°C to 60°C. Below 4°C, condensation on the metal prevents full adhesive contact and may freeze at the bond line; above 60°C, open-face tack can decline but the established bond remains dimensionally stable. The dead-soft foil stretches sufficiently to follow circumferential jacketing beads and corrugated metal profiles. For exterior insulated piping, the aluminum foil provides a low-permeance surface, but published water-vapor transmission data specific to this 33801 tape configuration is limited.

    When a Rubber-Based Utility Foil Tape Is Replaced with the Heavier Acrylic 33801 System

    Compared with many general-purpose aluminum foil tapes, 33801 uses an acrylic adhesive rather than a styrene-butadiene rubber, natural rubber, or solvent-based rubber system. Acrylic formulations generally show better resistance to yellowing and lower tendency to leach low-molecular-weight plasticizers when aged at 121°C for 7 days. Rubber-based adhesive systems may soften and shear on duct surfaces above 66–82°C. The heavier foil carrier also changes the failure mode: thin utility tapes may tear before the adhesive shears, while a 2.0 mil dead-soft carrier can sustain higher peel strain before fracture. Published head-to-head comparative data between 33801 and utility tapes from the same supplier is limited, so the comparison rests on published typical property values and adhesive chemistry rather than a single controlled study.

    General-purpose foil tapes are frequently produced with backing thickness of 1.0–1.5 mil and lower total caliper. Their puncture resistance is lower when installed over sharp metal edges, and their lower elongation may produce tearing during application around irregular seams. The 33801 product is positioned for applications requiring higher mechanical toughness and longer thermal exposure. However, it is not a substitute for silicone-adhesive foil tapes that are rated for continuous temperatures above 260°C in exhaust wrapping or aerospace thermal shielding. Silicone adhesive tapes often provide lower initial room-temperature peel on galvanized steel, while acrylic systems give higher initial and final peel on zinc-coated sheet metal.

    In automotive and industrial masking, the tape is used on metal panels, equipment housings, and paint-booth fixtures where paint bake cycles may reach 250°F (121°C). The dead-soft foil conforms to rivet heads and corrugations without losing contact. Because the foil is electrically conductive, the tape can be used for continuity across aluminum enclosure seams; the acrylic adhesive layer is an electrical insulator, so continuity depends on mechanical compression through the adhesive or an alternative conductive path. Production-line application commonly uses a compression roller with a contact width not less than 12 mm and a 60 Shore A rubber face to consolidate the foil without cracking.

    Surface preparation is determinative for bond quality. The recommended surface is clean, dry, and free of drawing oils, mill scale, and silicone release agents. Solvent wiping with isopropyl alcohol or an aliphatic naphtha may be used before application; chlorinated solvents that attack some metal finishes should be avoided. After solvent cleaning, a flash-off interval of several minutes is required so that residual solvent does not become trapped below the tape. On galvanized duct with an ambient temperature below 10°C, the acrylic adhesive modulus rises and wet-out becomes incomplete. At ambient relative humidity above 80%, moisture condenses on cold metal and reduces initial tack.

    Long-term failure modes reported from production-floor inspections include edge curl caused by excessive unwind tension, delamination caused by solvent entrapment, and adhesive splitting after prolonged heat aging. Edge curl is reduced when the applicator head maintains a consistent contact width across the tape edge and when the foil is not elongated more than 1% during application. Automated heads should maintain unwind tension below the yield point of the annealed foil; field audits in sheet-metal shops identify lateral misalignment of the applicator head as a frequent source of wrinkling.

    The product is not specified for continuous immersion in water, steam, or aggressive alkaline cleaners. Acrylic adhesive can be plasticized by ketones, esters, and chlorinated hydrocarbons; aliphatic and aromatic fuels can reduce peel strength and produce edge lift. At temperatures below -40°F, the adhesive may become brittle and separate from the foil under impact loading. For applications near open electrical terminals or high-voltage assemblies, the conductive foil backing must be grounded and isolated to avoid unintended current paths.

    Regulation or standardScopeRelevance to 33801
    ASTM D3652/D3652MThickness of tape and backingTotal caliper and foil thickness verification
    ASTM D3330/D3330MPeel adhesion at 180°Adhesive bond to stainless steel
    ASTM D3759/D3759MTensile strength and elongationFoil carrier mechanical properties
    ASTM E84/UL 723Surface burning characteristicsDuct assembly evaluation where code approval is required
    RoHS Directive 2011/65/EURestricted hazardous substancesAluminum and acrylic systems generally avoid intentionally added restricted metals and brominated flame retardants
    REACH Regulation (EC) No 1907/2006SVHC reporting above 0.1% w/wArticle-level supplier certificate required

    Regulatory compliance is normally documented through supplier certification rather than inferred from the product name. The aluminum carrier and acrylic adhesive are not known to contain intentionally added lead, cadmium, mercury, hexavalent chromium, polybrominated biphenyls, or polybrominated diphenyl ethers above the thresholds of RoHS Directive 2011/65/EU Annex II. Under REACH Regulation (EC) No 1907/2006, the finished tape is treated as an article under Article 3(3), and importer obligations under Article 33 depend on the presence of substances of very high concern above 0.1% w/w. Users evaluating incidental food-contact use must not rely on this product without separate review under 21 CFR 175.300, because the adhesive system may not be cleared for direct or indirect food contact.

    In service, the tape is selected over fluid-applied sealants where immediate handling strength and removability are production requirements. The aluminum foil backing provides a dimensionally stable barrier and a degree of puncture resistance that unsupported acrylic transfer tapes do not possess. At the same time, the aluminum layer prevents visual verification of adhesive wet-out; process controls therefore rely on peel-test sampling and roller-pressure monitoring. The product is applied in HVAC, insulation jacketing, metal repair, and industrial masking operations where the operating temperature remains within the stated -40°F to 250°F continuous range.

    The distinction from other products in the foil tape category is primarily based on the combination of a 2.0 mil dead-soft aluminum backing, a pressure-sensitive acrylic adhesive, and the specified continuous temperature rating of 121°C. Utility acrylic foil tapes with thinner backing may be adequate for low-temperature sealing, but they can exhibit lower tensile strength and greater tendency to tear during application. Rubber-based foil tapes may provide lower temperature flexibility but are generally limited to lower continuous service temperatures and can exhibit adhesive oxidation at elevated temperature. Silicone adhesive foil tapes may extend the upper temperature limit but often require primer for adhesion to galvanized steel and are not automatically interchangeable with acrylic systems in duct-sealing applications.

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