Продукты

3M 5700 Safety Stripe Tape

    • Название продукта: 3M 5700 Safety Stripe Tape
    • Сайт Factroy: Округ Юду, Ганьчжоу, Цзянси, Китай
    • Запрос цены: admin@ascent-chem.com
    • Производитель: Ascent Petrochem Holdings Co., Limited
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    Спецификации
    Код ТН ВЭД 471133

    Как аккредитованный завод 3M 5700 Safety Stripe Tape, мы соблюдаем строгие протоколы качества - каждая партия подвергается строгим испытаниям для обеспечения последовательных стандартов эффективности и безопасности.

    Упаковка и хранение
    Упаковка Packaging: one 2 in. x 36 yd roll per shrink-wrapped package; 3M 5700 Safety Stripe Tape.
    Погрузка контейнера (20-футовый контейнер) 20′ FCL loaded with palletized 3M 5700 Safety Stripe Tape cartons, securely strapped, evenly distributed, and sealed for ocean shipment.
    Доставка Shipping Description: 3M 5700 Safety Stripe Tape, non-hazardous adhesive tape. Not regulated for DOT, IATA, or IMDG transport. Ships as general cargo by ground, air, or sea. No UN number, hazard class, packing group, or dangerous goods documentation required. Protect from heat and sunlight.
    Хранение Always store 3M 5700 Safety Stripe Tape in its original packaging in a cool, dry, well-ventilated area, away from direct sunlight, heat, sparks, open flames, and incompatible chemicals such as strong solvents or oxidizers. Keep containers sealed and upright; protect from moisture, dust, and freezing. Maintain moderate room temperature. Follow the SDS and local regulations. Use first-in, first-out stock rotation.
    Срок годности Shelf life is five years from manufacture when stored in original packaging at 70°F and 50% relative humidity.
    Бесплатная цитата

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    Сертификация и соответствие требованиям
    Более подробное введение

    3M 5700 Safety Stripe Tape is a self-wound pressure-sensitive marking tape intended for hazard identification and spatial segregation on interior floors, equipment panels, rack boundaries, and noncritical industrial surfaces. The product is constructed with a plasticized poly(vinyl chloride) backing and a rubber-resin pressure-sensitive adhesive; published physical property data place total thickness at 5.0 mil (0.13 mm), standard roll length at 36 yd (32.9 m), and commonly supplied widths at 2 in, 3 in, 4 in, and 6 in. The black and yellow diagonal stripe pattern aligns to caution and hazard designation conventions in ANSI Z535.1-2022, though the standard does not certify the tape itself. The product is not a chemical barrier, not an anti-slip coating, and not a substitute for permanent floor markings in areas subject to heavy wheeled traffic unless facility testing indicates adequate durability.

    The backing contributes tensile and elongation behavior rather than simply serving as a printed surface. The manufacturer identifies the backing as poly(vinyl chloride) film; this material class introduces plasticizer dependence, which affects low-temperature flexibility and resistance to plasticizer migration into the adhesive. The black and yellow diagonal stripe is integral to the film rather than a printed topcoat, which reduces print-wear loss under abrasion. The reported elongation at break under ASTM D3759/D3759M is 150%, indicating that the backing can conform to mild curvature and irregular surfaces without tearing; the tensile strength at break is 12 lb/in (210 N/100 mm) under the same standard. These values are measured at laboratory ambient conditions and should not be extrapolated to continuous hot, solvent-exposed, or high-abrasion service without field evaluation.

    Why Does the 5700 Backing and Adhesive System Limit Service Temperature to 80°F When Crosslinked Acrylic Floor Tapes Extend Higher?

    The limiting factor is not the stripe pigment but the rubber-resin adhesive system and the thermoplastic poly(vinyl chloride) backing. The manufacturer’s published service temperature range for 3M 5700 is 40°F to 80°F (4°C to 27°C). Above the upper bound, the rubber-resin adhesive can soften and the poly(vinyl chloride) backing can undergo dimensional relaxation; below the lower bound, the backing stiffens and pressure-sensitive wetting on irregular surfaces decreases. This explains why the product is not recommended for loading dock edges, engine compartments, surfaces adjacent to ovens, or other heat sources. Crosslinked acrylic tape systems may show service ranges exceeding 150°F (66°C) in manufacturer literature, but those systems typically sacrifice the low-temperature conformability and hand-tear behavior of a plasticized vinyl/rubber-resin construction. Published data for prolonged outdoor ultraviolet exposure of this specific construction is limited, and such use requires a separately validated performance test rather than an extrapolation from indoor service.

    Table 1. Representative published physical property values for 3M 5700 Safety Stripe Tape
    Property Published value Test method or reference
    Backing material Plasticized poly(vinyl chloride) film Manufacturer designation
    Adhesive type Rubber-resin pressure-sensitive adhesive Manufacturer designation
    Total thickness 5.0 mil (0.13 mm) ASTM D3652/D3652M
    Adhesion to stainless steel 20 oz/in (22 N/100 mm) ASTM D3330/D3330M
    Tensile strength at break 12 lb/in (210 N/100 mm) ASTM D3759/D3759M
    Elongation at break 150% ASTM D3759/D3759M
    Roll length 36 yd (32.9 m) Manufacturer packaging data
    Common widths 2 in, 3 in, 4 in, 6 in Manufacturer packaging data
    Service temperature range 40°F to 80°F (4°C to 27°C) Manufacturer technical data
    Application temperature range 60°F to 80°F (16°C to 27°C) Manufacturer technical data

    Values in Table 1 are representative published values, not batch acceptance limits. The peel adhesion value is obtained after 20 minutes dwell on a stainless-steel panel; concrete, wood, and painted substrates may produce lower values because of surface roughness, chemistry, and cohesive failure within the substrate.

    Adhesion on Industrial Concrete and Painted Steel Substrates

    Field adhesion on industrial substrates depends on surface preparation more than on the laboratory peel figure. On sealed concrete, the surface should be free of laitance, curing compounds, dust, and moisture. A solvent wipe procedure consistent with SSPC-SP1 is the minimum preparation; for oil-contaminated concrete, alkaline detergent washing followed by complete drying is required because residual moisture at the adhesive interface prevents cohesive wetting. ASTM F1869 moisture-emission testing may be used to quantify concrete slab moisture. No manufacturer-adopted pass/fail threshold is published for 5700, but a conservative interpretation is that surfaces showing visible dampness or a moisture vapor emission rate above 3 lb/1,000 ft²/24 h (1.4 kg/92.9 m²/24 h) are unsuitable. On painted steel, adhesion depends on paint cohesive strength and adhesion to the underlying metal; the tape may lift poorly bonded paint during removal. For both substrate classes, field peel tests after 24 h dwell should be conducted using a 2 kg (4.4 lb) rubber-covered roller as described in the ASTM D3330/D3330M conditioning procedure to wet out the adhesive and minimize entrapped air.

    Application below 60°F (16°C) is outside the manufacturer’s published range and increases the risk of edge lifting because the adhesive does not flow into microvoids. The tape should be applied only after the substrate temperature and tape roll have equilibrated within the stated application window for at least 2 h; this dwell is a practical industrial convention, not a printed 3M requirement. On high-traffic longitudinal edges, a staggered overlap of at least 1 in (25 mm) at butt joints is used by some facility maintenance teams to reduce peel initiation at leading edges; no ASTM test method is available for transient wheel impact on tape edges. The product is not intended for submerged service, continuous chemical splash, or locations where aggressive cleaners containing glycol ethers, ketones, or chlorinated solvents are used because these solvent classes can soften the poly(vinyl chloride) backing and extract the rubber-resin adhesive.

    In comparison with solid-color vinyl tapes such as the 3M 471 series, 3M 5700 is not positioned as a higher-strength product; the primary difference is the diagonal stripe pattern and the resulting use for hazard perimeters. Both 3M 5700 and 3M 471 use poly(vinyl chloride) backing and rubber-resin adhesive chemistry, but 3M 471 is manufactured as a solid-color tape with a different color inventory. Published data for the two product families are not directly interchangeable for service temperature and adhesive thickness, so procurement specifications should call out one product number rather than substituting based on thickness alone. Compared with non-adhesive polyethylene barricade tapes, 3M 5700 has measurable pressure-sensitive adhesion to stainless steel under ASTM D3330/D3330M and is intended for application to surfaces rather than temporary fence or post wrapping. Compared with heavy-duty floor marking tapes using crosslinked acrylic adhesives, 3M 5700 shows a lower service temperature upper bound; published data for textured concrete peel of this exact product is limited, and the ASTM D3330/D3330M stainless-steel figure should not be used as a direct field predictor.

    When Maintenance, Removal, and Chemical Exposure Boundaries Interact on Aging Floors

    Maintenance operations should account for the interaction between plasticized backing, rubber-resin adhesive, and substrate coatings. On flexible vinyl flooring, plasticizer migration from the marked substrate into the tape adhesive can reduce holding power and increase residue after removal; no quantitative migration rate is published for this configuration, so long-term removal should be validated on a mock-up area. On painted metal, aggressive removal can exceed the paint cohesive strength and pull coating fragments from the surface. No published ASTM E84 surface burning or ASTM D4060 Taber abrasion data for this specific product is available; therefore, use in occupied corridors with code-mandated floor finish classifications requires separate submitted data. The product has no published coefficient of friction under ANSI/NFSI B101.1, so walkway slip resistance must be assessed as part of the installed flooring system rather than assumed from the tape surface.

    Regulatory compliance status is determined by the applicable version of the manufacturer’s Regulatory Data Sheet. No food-contact claim is made for 3M 5700 under FDA 21 CFR 177.1520 or 21 CFR 175.300; if the tape is used near food-contact surfaces, it must not be applied as a direct food-contact material unless expressly certified. For industrial chemical registration, EU users should consult the current safety data sheet for REACH SVHC listing and any applicable candidate list disclosure. The presence of poly(vinyl chloride) backing means that the product contains chlorine; disposal and incineration must comply with local and national chlorinated waste regulations. RoHS compliance is relevant only for electrical/electronic equipment applications where the tape may become part of a product within the scope of RoHS 2011/65/EU. These statements are regulatory classifications, not performance claims.

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