Продукты

Solvay SM5130 Sealant tape

    • Название продукта: Solvay SM5130 Sealant 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 293505

    Как аккредитованный завод по уплотнению лент Solvay SM5130, мы соблюдаем строгие протоколы качества - каждая партия подвергается строгим испытаниям для обеспечения последовательных стандартов эффективности и безопасности.

    Упаковка и хранение
    Упаковка Solvay SM5130 Sealant Tape is typically supplied as one 1-lb roll per package, sealed in plastic and labeled.
    Погрузка контейнера (20-футовый контейнер) 20′ FCL container loading of Solvay SM5130 Sealant tape: palletized, dry, secured cargo, ready for international ocean shipment.
    Доставка Solvay SM5130 Sealant Tape is shipped frozen on dry ice (UN1845, Carbon dioxide, solid (Dry ice), Class 9, PG III). The sealant itself is non-hazardous. Maintain at -20°C or below. Protect from moisture, heat, and direct sunlight. Follow supplier thawing and application instructions.
    Хранение Store Solvay SM5130 Sealant Tape in original, unopened packaging in a cool, dry, well-ventilated area away from heat, ignition sources, and direct sunlight. Keep sealed to prevent moisture and contamination. Maintain manufacturer-recommended temperature, typically 5–25°C (41–77°F). Do not freeze unless specified. Rotate stock FIFO and observe shelf life and local regulations.
    Срок годности Shelf life is 12 months from date of manufacture when stored unopened at 27°C (80°F) or below.
    Бесплатная цитата

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    Сертификация и соответствие требованиям
    Более подробное введение

    Solvay SM5130 Sealant Tape is a heat-curable, epoxy-based calendered film supplied on a polyethylene release interleaf. The grade is manufactured as a non-slumping filler and sealant for controlled bondline thicknesses from 0.50 mm to 3.18 mm. It does not require mixing, static dispensing equipment, or atmospheric moisture to cure. The uncured film is stored at -18°C and is applied in a low-tack or tack-free state at ambient shopfloor temperatures. After cure, the crosslinked matrix is intended for continuous dry-air service from -55°C to 121°C, though the exact upper limit depends on the selected cure cycle and chemical environment.

    The product is differentiated from two-component epoxy paste sealants by its frozen-storage film form. Because it is calendered to a fixed thickness, it acts both as a bondline spacer and as a sealant. In composite assemblies, this prevents overcompression of the faying surface and reduces resin bleeding into honeycomb cells. In metallic panels, it fills surface irregularities without the slump that gravity induces in paste sealants before cure.

    The Product Is Not a Pressure-Sensitive Bonding Tape

    Acrylic foam tapes and pressure-sensitive polyethylene or acrylic carrier tapes develop immediate peel adhesion through viscoelastic wetting under application pressure. They are typically installed at ambient temperature and reach full bond strength without a heat cycle. SM5130 requires a thermal cure; it will not carry sustained structural load immediately after placement. Its behavior before cure is closer to a conformable, uncrosslinked film that can be repositioned or debulked. Once cured, it does not exhibit creep recovery, pressure-sensitive tack, or the long-term plastic flow of acrylic foam carriers. In service, crosslinked epoxy sealant film generally provides better resistance to aggressive hydraulic fluids than pressure-sensitive acrylic foam, but the trade-off is the need for frozen storage and out-time control.

    What Distinguishes SM5130 from Moisture-Cure Polysulfide and Silicone Paste Sealants?

    Polysulfide paste sealants qualified to MIL-PRF-81733 are applied by extrusion and tooling. Their thickness and fillet profile depend on operator technique, and they require moisture in the ambient environment for oxidative coupling. Solvent-containing versions can shrink during cure and may outgas in confined spaces. SM5130 is calendered to specified thickness and is not tooled after placement. It cures by epoxy crosslinking at elevated temperature, so the cure rate is controlled by the heating program rather than by temperature and humidity changes on the shop floor.

    Silicone paste sealants have a broad temperature range and remain flexible, but they can introduce silicone contamination that interferes with later coating or adhesive bonding. Their low cohesive strength and plasticizer or oil bleed can migrate into adjacent paint systems. SM5130, as an epoxy film, avoids silicone migration in the uncured and cured states. However, it is not a replacement for silicone sealants in continuous service above 121°C unless the specific application has been tested for thermal aging under load.

    Relative to chromate-containing corrosion-inhibiting sealant tapes, SM5130 may have a different corrosion inhibition profile. Some polysulfide or epoxy tapes include strontium chromate or barium chromate corrosion inhibitors; SM5130 should be checked against the current Solvay Safety Data Sheet for inhibitor content. If a corrosion-inhibiting sealant is required for faying surfaces in structures qualified to AMS 3281 or BMS 5-125, the specification should be confirmed before substitution.

    When Vacuum-Bag Consolidation Demands a Non-Slumping Edge Seal

    During honeycomb sandwich panel close-out, SM5130 is positioned as a continuous strip at core edges and around inserts. The release interleaf is removed only after the roll has equilibrated to 18–26°C. The film is laid onto the first adherend and debulked with a hand roller or vacuum bag at 0.3–0.5 bar. This step collapses air and helps the tape conform to a radius before the cure cycle. Multiple layers may be used to fill severe gaps, but each layer should be debulked separately to avoid trapped air.

    The cure cycle is typically 121°C for 90 min or 177°C for 30 min. A heating rate between 1°C/min and 3°C/min is applied. The 121°C cycle provides a longer flow window and is used for thick parts or for co-cure with epoxy prepregs that are sensitive to high exotherm. The 177°C cycle is used when the surrounding laminate is cured at a higher temperature or when a shorter cycle time is needed. During cure, the film softens, flows into surface irregularities, and then gels. Pressure can be autoclave pressure of 50–100 psi or vacuum of 0.7–1.0 bar. In oven-only cures, vacuum is held until the sealant has reached its gel point; otherwise porosity can expand.

    Thermocouple data from production-scale autoclaves indicate that part temperature lag can exceed 15°C in thick honeycomb panels. The cure timer should start from the coldest embedded thermocouple, not from the oven air temperature. This is particularly important at 177°C, because the reaction exotherm can carry the part above the set point if the heating rate is not controlled.

    On a production line, the most frequent handling failure is condensation on the uncured film. SM5130 rolls are removed from -18°C storage and kept in the barrier pouch until the surface temperature is within 5°C of the shopfloor. A roll that is opened too early develops a thin water film that can become trapped in the bondline as porosity. The tape should not be force-dried with warm air above 40°C, because localized epoxy reaction can begin at the edges and reduce flow. In addition, SM5130 should not be applied over wet lay-up surfaces containing unreacted primary amine hardeners from hand-laminated epoxy components. Residual amines can accelerate the cure and shorten the open time available for placement and debulking. Solvent wiping with methyl ethyl ketone or isopropyl alcohol should be followed by a flash-off period of 10–15 min before tape application.

    Specification, Storage, and Out-Time Controls

    The following table consolidates the control parameters for SM5130-type epoxy film sealant. Values are representative of the product class and should be verified against the current Solvay technical data sheet and certificate of analysis before engineering release. Published mechanical data for the specific SM5130 product configuration is limited; the ranges below reflect the epoxy film sealant class and typical manufacturing controls.

    SM5130-type epoxy film sealant control matrix
    ParameterRepresentative range or valueTest method
    Nominal thickness0.50 mm to 3.18 mmASTM D3767-03(2020)
    Specific gravity, uncured1.10 to 1.20ASTM D792-20
    Volatile content≤ 1.0%ASTM D3532-12(2020)
    Cure schedule121°C for 90 min or 177°C for 30 minThermocouple cure profile
    Out-time at 23°C14 daysManufacturer control
    Shelf life at -18°C12 monthsManufacturer control
    Lap shear on 2024-T3 clad aluminum≥ 16.5 MPaASTM D1002-10(2019)
    Floating roller peel≥ 3.5 N/mmASTM D3167-10(2017)
    Continuous service range-55°C to 121°CCured-network heat resistance

    The frozen-storage constraint is a supply-chain and manufacturing issue. When a production cell has variable takt time, a roll that is repeatedly cycled between -18°C and 23°C may develop condensation damage. Therefore the roll should be segmented or assigned to a dedicated job rather than withdrawn and returned multiple times. If condensation is suspected, the roll is not to be returned to the freezer; it should be quarantined or tested for lap shear before use. The same applies to material that exceeds 14 days of cumulative out-time at 23°C, because the epoxy may have advanced enough to reduce flow and adhesion even if it remains visually unchanged.

    In service, SM5130 is placed in areas that are often inaccessible after assembly. Faying surfaces are prepared per ASTM D2651-01(2024) for aluminum, or by peel-ply removal and abrasion for carbon-fiber reinforced plastic. For aluminum adherends, chromic acid anodizing or a bonded-friendly conversion coating is usually specified; a bare abraded surface is not sufficient. The tape is pressed into place with sufficient pressure to eliminate air channels, but sharp tools are avoided because they can cut or thin the film below the intended bondline thickness.

    Compatibility Boundaries in Fuel and Hydraulic Fluid Environments

    After cure, the epoxy matrix is generally resistant to phosphate ester hydraulic fluids and hydrocarbon fuels when evaluated by immersion tests. However, continuous immersion in Skydrol or aggressive esters should be verified according to ISO 1817 or ASTM D543-21. The sealant is not recommended for continuous contact with strong acids, hot amines, or chlorinated solvents, because the crosslinked epoxy network may absorb solvent and lose hardness. For applications involving fuel tanks, the final assembly must pass sealant qualification tests specified by the airframe manufacturer, such as AMS 3281 or equivalent. SM5130 should not be used as the sole barrier in dynamic joints where cyclic movement exceeds the strain capability of the cured sealant; a polysulfide or fluorosilicone joint sealant may be required in those locations.

    SM5130 is not intended as a primary load-transfer layer in a spar-to-skin or skin-to-stringer bond. Structural film adhesives such as high-toughness epoxy films are qualified for primary shear and peel loads, while SM5130 is used as an ancillary sealant and filler. In a honeycomb sandwich panel, the structural adhesive may carry outboard skin-to-core loads, while SM5130 seals the core edge and prevents water ingress. The two materials are often co-cured in the same cycle. In such a co-cure, the cure temperatures must be matched; SM5130 is selected for the 121°C or 177°C cure schedules typical of medium-temperature epoxy prepregs.

    This positioning is a key difference from other sealant tapes. Some epoxy film adhesives may also seal, but they are formulated for high peel and shear and may be too tough or too high-viscosity to flow into small gaps. SM5130 is formulated to fill and seal without the high structural performance requirement of a film adhesive. Conversely, it has higher adhesion than a removable sealant or masking tape.

    In a sandwich panel edge close-out, the tape is commonly installed before the upper skin is placed. A precise sequence is: remove the release interleaf, lay the tape along the edgeband or core close-out, verify thickness after placement with a pin gauge or ultrasonic thickness gauge, cover with the second skin, and bag. The bag should be vented or staged in a way that prevents resin bleed from the neighboring prepreg into the sealant area. If the tape is placed over a core splice that is not sealed, core migration during cure can displace the sealant. On production lines, core splices are stabilized with additional film adhesive or a fast-cure core splice adhesive before tape application.

    Rework of cured SM5130 is mechanical. The crosslinked epoxy film cannot be dissolved by common solvents without damaging adjacent composite or primer. Machining, sanding, or selective removal with abrasive discs is used. If the area is being rebonded, the surface should be solvent-wiped and, where appropriate, lightly abraded per ASTM D2651-01(2024) before applying new film. This is a limitation relative to some polysulfide sealants that can be partially softened or removed with chemical strippers.

    Comparative sealant class attributes
    AttributeSM5130 epoxy filmPolysulfide pasteSilicone pasteAcrylic foam tape
    Cure mechanismThermal epoxy crosslinkingMoisture-activated oxidative couplingMoisture-activated condensationPressure-sensitive viscoelastic
    MixingNoneNone or two-partNoneNone
    Storage-18°CAmbient, limited shelfAmbientAmbient
    Thickness controlCalendered filmTooling-dependentTooling-dependentCalendered foam or film
    Primary trade-offFrozen storage; out-timeShrinkage; mixing variabilitySilicone contaminationLower temperature and fluid resistance
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