| Код ТН ВЭД | 697562 |
Как аккредитованный завод 3M 363LC высокотемпературной алюминиевой фольги /стеклянной ленты, мы соблюдаем строгие протоколы качества - каждая партия подвергается строгим испытаниям для обеспечения последовательных стандартов эффективности и безопасности.
| Упаковка | Packaged as 9 rolls per case; each roll is individually wrapped and labeled with product name, size, lot number, and safety information. |
| Погрузка контейнера (20-футовый контейнер) | 20′ FCL loading of 3M 363LC High Temperature Aluminum Foil/Glass Cloth Tape, palletized, secured, and braced for safe ocean transport. |
| Доставка | Shipping description: 3M 363LC High Temperature Aluminum Foil/Glass Cloth Tape is not regulated as dangerous goods. It has no UN number, hazard class, or packing group. Transport by ground, air, or sea in original packaging; keep dry, clean, and protected from extreme heat, cold, and physical damage. |
| Хранение | Store in a clean, dry, well-ventilated area at room temperature, ideally 15–27°C (60–80°F) and 40–60% relative humidity. Keep in original packaging, away from direct sunlight, moisture, dust, heat, and ignition sources. Avoid contact with solvents, oils, and corrosive materials. Rotate stock oldest first, and maintain stable conditions to preserve adhesion and tape performance. |
| Срок годности | Shelf life: typically 24 months from date of manufacture when stored unopened at 21°C (70°F) and 50% relative humidity. |
Конкурентоспособные 3M 363LC высокотемпературная алюминиевая фольга /стеклянная ткань лента цены, которые соответствуют вашему бюджету - гибкие условия и индивидуальные котировки для каждого заказа.
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Flexible thermal-management systems used in aerospace engine bay barriers, industrial oven door seals, and exhaust silencer wraps require a pressure-sensitive tape backing that maintains tear resistance at seam overlaps while presenting a low-emissivity aluminum face to radiant heat. The 3M 363LC High Temperature Aluminum Foil/Glass Cloth Tape is specified for these duties because the backing consists of a dead-soft aluminum foil laminated to a woven glass cloth, and the adhesive is a crosslinked silicone system. The LC suffix in the distribution part-number stream identifies a release-liner or converted-roll configuration; because the supplier-controlled LC-specific technical dataset is limited, the physical values cited here are those published for the 363 platform unless otherwise stated.
Manufacturer-reported typical construction values place total tape thickness at 7.3 mil (0.185 mm) and adhesive thickness near 1.0 mil (0.025 mm). The glass cloth contributes tensile strength in the machine direction and across the web, while the dead-soft foil permits conformability over crimped insulation blankets and irregular seam contours. Principal roll formats are slit from master logs; width tolerances are converter-specific, typically ±1/64 in for widths up to 2 in and ±1/32 in for wider formats. These tolerances are manufacturing references, not certified dimensional minima.
The tape construction is a three-layer composite: the exterior aluminum foil, the woven glass cloth carrier, and the pressure-sensitive silicone adhesive. The adhesive is crosslinked rather than thermoplastic; this crosslink density is relevant when the tape is applied to silver- or copper-based reflective substrates because peroxide-cured silicones may retain reactive species that promote interfacial corrosion under high humidity. Users should evaluate metal conductor compatibility when the tape is intended for direct contact with copper bus bars or avionic ground planes.
The following reference values are manufacturer-reported for the 363 platform and are used for incoming-inspection comparison against the certificate of analysis.
| Measurement | Reported typical value | Test reference |
|---|---|---|
| Total tape thickness | 7.3 mil (0.185 mm) | ASTM D3652 |
| Backing thickness | 6.3 mil (0.160 mm) | ASTM D3652 |
| Adhesive thickness | 1.0 mil (0.025 mm) | ASTM D3652 |
| Peel adhesion to stainless steel | 55 oz/in (60.1 N/25 mm) | ASTM D3330 |
| Tensile strength at break | 175 lb/in (306.2 N/25 mm) | ASTM D3759 |
| Elongation at break | 6% | ASTM D3759 |
| Service temperature | -65°F to 600°F (-54°C to 316°C) | Manufacturer thermal rating |
These values are typical reference data. They are not upper or lower specification limits. For critical assemblies, qualification should include adhesion to the exact substrate, liner release force, and retained peel after thermal soak at the application maximum soak temperature.
Thermal cycling from ambient to under-hood temperatures of 150°C to 200°C introduces thermal expansion mismatch between the aluminum face, glass cloth, and substrate. The silicone adhesive has a low glass transition onset relative to acrylic systems, which allows peel adhesion to remain processable at low substrate temperatures. At elevated temperature, the same adhesive loses some unrolled tack but retains higher shear holding force than solvent-acrylic alternatives; published technical data for silicone pressure-sensitive adhesives indicate continuous heat resistance above 250°C in dry-air conditions. Moisture and confined steam limit the practical boundary because silicone reversion can be accelerated by hydrolysis.
The woven glass cloth interrupts tear propagation. In service, a tear initiated at a staple or cable tie contact point is stopped or slowed by the cloth weave, whereas an unsupported 2 mil foil tape tears readily across the web. This behavior is not quantified by standard tensile values alone; a puncture test on a supported edge is more predictive of installed seam survival. Users with severe mechanical abrasion should apply an outer stainless steel braid or a sacrificial overwrap because the aluminum face of the 363LC is thinner than the cloth carrier and can be eroded by high-velocity grit.
The product is used as a wrap on hydraulic lines, cable bundles, and thermocouple harnesses where low-emissivity shielding and abrasion resistance are required simultaneously. When applied to fiberglass insulation seams, the tape should be burnished with a PTFE pad roller to displace air entrapment; surface temperature during application should be between 18°C and 30°C for optimum initial wet-out. Dust and moisture on the substrate create a weak boundary layer; solvent wiping with 70/30 isopropanol/water and drying at 25°C for approximately 10 min prior to lamination improves bond consistency.
At continuous temperatures above 260°C, the limiting layer is the silicone adhesive, not the backing. The glass cloth and aluminum foil remain dimensionally stable beyond 400°C in air for short periods, but the adhesive crosslink network can undergo oxidative hardening at the exposed edges and subsequent loss of tack at the bond line. Manufacturer literature places the maximum service temperature at 316°C (600°F) for the 363 platform; this rating assumes dry-air exposure and a clean, high-energy substrate. It does not imply continuous immersion in superheated steam, direct flame contact, or application over silicone substrates that contain low-molecular-weight siloxane plasticizers.
Exposure to alkaline cleaners above pH 9, concentrated acetic acid, or continuous water condensation at temperature can embrittle the cloth or propagate corrosion at the foil edge. Therefore, process validation should include post-thermal-age peel retention testing to ASTM D3330 after a 72 h soak at the worst-case maximum temperature. If retained peel falls below the design allowance, the assembly must be redesigned with a mechanical clamp, stainless band, or additional fire-resistant overbraid rather than relying solely on adhesive holding force.
Because the backing contains an electrically conductive aluminum layer, the tape is not intended for primary electrical insulation. If the application requires a dielectric glass-cloth high-temperature tape, a silicone adhesive glass-cloth product without foil should be used. Where the conductive layer is desirable for static dissipation or shielding, perimeter sealing with a non-conductive lacquer may be required to prevent shorting against adjacent surfaces.
The comparison in the table below addresses the two most common substitutions: acrylic-adhesive foil tapes used for HVAC sealing and unsupported silicone foil tapes used for radiant heat reflection. Mechanical values vary by supplier; the bands are from manufacturer-published technical data and conversion literature, not certified specification minima.
| Attribute | 3M 363LC platform | Acrylic foil tape | Unsupported silicone foil tape |
|---|---|---|---|
| Backing construction | Woven glass cloth plus dead-soft aluminum | Dead-soft aluminum | Dead-soft aluminum |
| Total thickness | 7.3 mil (0.185 mm) typical | 2.0 mil to 4.5 mil typical | 2.0 mil to 3.5 mil typical |
| Adhesive chemistry | Silicone | Acrylic or solvent acrylic | Silicone |
| Tensile strength | 175 lb/in (306 N/25 mm) typical | 20 lb/in to 40 lb/in (35 N/25 mm to 70 N/25 mm) typical band | Typically below 40 lb/in (70 N/25 mm) |
| Continuous service range | -54°C to 316°C | Often limited to 110°C to 150°C due to acrylic thermal softening | -54°C to 316°C, with lower tear resistance |
| Main substitution risk | Conformability reduces on radii below 10 mm | Adhesive softens near 150°C and loses shear holding force | Tears at staple points and cable tie edges |
The mechanical reinforcement is the differentiator in service, not the adhesive alone. If the seam is not subject to puncture, tear, or abrasion, a thin unsupported silicone foil tape may be used; if the tape must survive cloth abrasion, metal braid expansion, or mechanical tension at elevated temperature, the 363LC platform is specified. For acrylic tape substitution, the thermal boundary is the limiting variable: acrylic adhesives are generally unsuitable for continuous use above 150°C, while silicone systems remain dimensionally stable up to the 316°C rated limit under dry-air conditions.
Storage prior to application should be in original packaging at 16°C to 27°C and 20% to 50% relative humidity for a shelf life typically not exceeding 24 months from date of manufacture. Rolls stored outside these limits may exhibit release liner lift or edge staining from the adhesive; reconditioning in a dry environment for 24 h may restore some initial tack, but edge corrosion of the aluminum foil cannot be reversed. Slitting operations on glass cloth-backed tape produce fine glass fibers; converter dust collection should be rated for abrasive particulate. The operator should verify the current 3M safety data sheet, RoHS declarations, and REACH status for the specific version because converted rolls may include a differential release liner subject to regional substance-control updates.