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Как аккредитованная фабрика Bostik T660/T665 AIRSEAL WINDOW TAPE DUO/PLUS высококачественной универсальной мигающей ленты для внутреннего и внешнего использования, мы соблюдаем строгие протоколы качества - каждая партия подвергается строгим испытаниям для обеспечения последовательных стандартов эффективности и безопасности.
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Конкурентная лента Bostik T660/T665 AIRSEAL WINDOW TAPE DUO/PLUS высокого качества универсальная мигающая лента для внутренних и внешних помещений Используйте цены, которые соответствуют вашему бюджету - гибкие условия и индивидуальные котировки для каждого заказа.
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Bostik T660/T665 AIRSEAL WINDOW TAPE DUO/PLUS is supplied as a universal flashing tape for interior and exterior window perimeter sealing under the general classification of flexible self-adhesive vapour-control and airtightness membranes. The product construction combines a polypropylene fleece backing with a solvent-free acrylic dispersion adhesive. Manufacturer-published dimensional data list roll widths of 75 mm, 100 mm, and 150 mm at a standard roll length of 25 m. Nominal total thickness is 0.45 mm when measured in accordance with ISO 4593. The release liner is a silicone-treated split film that permits staged removal during two-step detailing. The product is positioned between the window frame and the rough opening, where it must function simultaneously as an air barrier on the interior plane and a weather-resistive transition on the exterior plane. Unlike single-component polyisobutylene or butyl tapes, the acrylic dispersion adhesive contains no solvent or bituminous phase, which reduces surfactant leaching risk on uncured mineral renders. Manufacturer declarations describe the tape as paintable after the acrylic film has coalesced, provided the paint system is suitable for pressure-sensitive acrylic surfaces.
The primary chemical distinction lies in the failure mode of the adhesive under cyclic thermal loading. Butyl and polyisobutylene tapes exhibit viscous flow at elevated service temperatures, which can result in adhesive ooze from the tape edge when the joint temperature exceeds 40 °C. Styrene-butadiene-styrene (SBS) modified bitumen tapes rely on a heavier bituminous phase and typically require a separate primer for cementitious and low-energy substrates. The acrylic dispersion used in T660/T665 coalesces after drying to form a cohesive film with a manufacturer-declared service temperature range of -40 °C to +80 °C. This shifts the limiting factor from adhesive creep to backing dimensional stability. In field installations, the acrylic system tolerates short-term exposure to UV radiation better than adhesive-side bitumen, although the polypropylene fleece remains non-UV-stable for indefinite exposure. Published peel adhesion values for the acrylic system to stainless steel are reported at 30 N/25 mm following 24 h dwell at 23 °C and 50% relative humidity when evaluated under ISO 29862. Equivalent butyl tapes often show higher initial tack but lower recovery after load reversal because of permanent viscous deformation. The acrylic system also exhibits lower cold flow at 80 °C, which is relevant in dark exterior reveals where surface temperatures exceed 60 °C in summer conditions.
Surface preparation for T660/T665 follows the general rule for acrylic dispersion pressure-sensitive adhesives: the substrate must be load-bearing, dust-free, free of oil, form-release agents, and frost. On concrete, brick, and cementitious block, the manufacturer’s installation instructions require the removal of laitance and sharp protrusions. Absorbed surface moisture should be below 8% by mass as measured with a capacitance or carbide hygrometer. When applying to OSB/3 or plywood substrates, the tape requires mechanical pressure with a steel contact roller at a minimum load of 2 kg to wet out the adhesive film. The open-faced adhesive bonds to damp substrates but not standing water; installations on surfaces with visible water film or ice are outside the published application envelope. At application temperatures between +5 °C and +40 °C, initial tack is sufficient for vertical repositioning of the strip. Below +5 °C, the silicone-coated split liner becomes increasingly difficult to remove, and the acrylic tack falls sharply; pre-warming of the roll to +18 °C for 24 h before use is required. No solvent primer is normally specified for OSB, concrete, aluminium, PVC, or timber, but high-alkaline masonry with a surface pH above 12 may require an adhesion test patch due to possible saponification of acrylic ester groups over long-term exposure. Dust-free conditions are critical; contaminated surfaces reduce bond strength because the adhesive adheres to the dust layer rather than the substrate.
The T660/T665 DUO/PLUS uses a split release liner in the machine direction. This configuration allows the installer to remove the first release strip, bond the tape along the frame or wall plane, and then remove the second strip after positioning. The geometry is particularly relevant for window-to-wall compression zones where the tape must bridge between the frame jamb and the rough opening without tearing. Dimensional stability of the polypropylene fleece backing is reported by the manufacturer as elongation at break of at least 20% in the machine direction when tested according to DIN EN 12311-2. The fleece also provides tear resistance across brick edges and screw heads. Overlap geometry of adjacent tape lengths follows the industry practice of 50 mm minimum lap in the machine direction and full-width butt joints with an additional patch in corner details. The split liner does not contribute to the final joint thickness, but liner removal must be completed before the tape is exposed to prolonged sunlight because the silicone release coating loses removability after UV exposure exceeding approximately 4 weeks depending on the liner film. In production-scale window installation, staged liner removal is reported to reduce re-positioning waste by maintaining a clean second adhesive face until the frame is secured, but published comparative yield data for this configuration is limited. The product’s pair of release strips also permits the bond line to be split into an exterior weather lap and an interior airtight lap without cutting the tape longitudinally.
The critical process conflict for acrylic flashing tapes is the relationship between initial adhesion and drying rate. At +5 °C and 80% relative humidity, the acrylic dispersion does not coalesce at the same rate as at 23 °C, and final peel strength development may require 72 h instead of 24 h. The tape remains pressure-sensitive but the backing can become stiff, which increases spring-back forces at corner details. T660/T665 is normally specified for application at substrate temperatures not below +5 °C; the “PLUS” designation relates to the higher coat weight of the acrylic adhesive and the associated increase in low-temperature tack compared with standard T660/T665. Published data for the specific low-temperature adhesion differential are limited, but field data from cold-climate installations indicate that pre-warming the roll and using a contact roller with a 45° angle at corner transitions reduces edge lifting. The tape should not be combined with solvent-based liquid-applied membranes before the acrylic adhesive has fully coalesced, as solvents migrate into the adhesive interface and reduce peel adhesion according to published compatibility testing under DIN EN 1939. On high-thermal-mass substrates below dew point, condensation at the interface must be addressed before liner removal because a water film prevents direct contact between the acrylic polymer and the substrate. At relative humidity above 80%, the manufacturer’s published installation guidance requires mechanical drying or a delay until the surface condition returns to the permitted range.
Conformity documentation for T660/T665 is structured around harmonised test methods for flexible sheets and vapour control layers. The table below summarises the manufacturer-published test designations and declared performance intervals.
| Property | Test method | Published declaration |
|---|---|---|
| Nominal total thickness | ISO 4593 | 0.45 mm |
| Water tightness | EN 1928:2000 | Pass at 2 kPa |
| Water vapour diffusion-equivalent air layer thickness sd | EN 1931 | ≥ 25 m |
| Peel adhesion to steel | ISO 29862 | 30 N/25 mm |
| Service temperature | Manufacturer declaration | -40 °C to +80 °C |
| Application temperature | Manufacturer declaration | +5 °C to +40 °C |
| Roll dimensions | Manufacturer declaration | 75 mm / 100 mm / 150 mm × 25 m |
| Shelf life | Manufacturer declaration | 12 months at +15 °C to +25 °C |
The sd value classifies the tape as a vapour barrier in interior applications. For exterior use, the tape functions as a weather resistive barrier element but should not be considered a replacement for the main water-resistive barrier. Joint tightness under air pressure differential of 50 Pa conforms to the airtightness layer requirements of DIN 4108-7 and EN 12114 when bonded to clean substrates and rolled with adequate pressure.
Unlike butyl tapes that rely on flow, the acrylic dispersion adhesive requires contact pressure to bring the polymer film into molecular contact with the substrate. The manufacturer recommends a contact roller with a minimum mass of 2 kg and a 40 mm to 50 mm face width, applied at a speed of approximately 10 cm/s. Peel adhesion after 15 min is typically lower than after 24 h; for acrylic dispersions, the final cohesive strength develops through evaporation of residual water and coalescence of polymer particles. The split liner prevents self-bonding during storage and allows the tape to be stored in horizontal or vertical positions without edge ooze. Storage conditions published for T660/T665 are +15 °C to +25 °C in dry conditions, with a shelf life of 12 months when stored in original packaging. Exposure of the adhesive to cement dust before liner removal reduces final peel adhesion because the dust occupies the surface area required for van der Waals contact; a clean polyethylene protective flap is required in high-dust cutting areas. If the tape is installed under compression, for example between a window frame and a mechanically fixed bracket, the load-bearing capacity of the acrylic bond line is maintained only when the adhesive has reached at least 70% of its final cohesive strength. Published data for this specific configuration is limited, and the manufacturer’s technical service should confirm when early load transfer is planned.
Gap movement capacity in the window-to-wall joint is governed by the elongation capability of the backing and the shear compliance of the adhesive. The polypropylene fleece is anisotropic; machine-direction tensile strength is higher than cross-direction tensile strength. Manufacturer-published tensile strength exceeds 50 N/15 mm in the machine direction and 30 N/15 mm in the cross direction under DIN EN 12311-2. Under a 10% shear strain applied at 23 °C, the acrylic bond line accommodates movement without cohesive failure, but repeated cycling beyond 15% may initiate edge lifting if the overlap is shorter than the 50 mm minimum. The tape is therefore not a replacement for a structural sealant in joints with movement capacity above 20%. In cavity-wall and timber-frame constructions, the air barrier function relies on continuous contact along the upper and lower edges of the tape; interruptions of more than 3 mm wide create leakage paths that reduce the effective airtightness of the joint. Equipment used to verify installation quality includes smoke pencils, blower-door fans operating at 50 Pa pressure difference, and infrared thermography under a 10 °C indoor-outdoor temperature differential.
Compatibility with adjacent materials follows standard acrylic pressure-sensitive adhesive limitations: solventborne PU membranes can soften the adhesive if applied before the tape has cured for 72 h, and amine-based epoxy coatings may discolour the polypropylene fleece. On PVC frames, plasticizer migration can reduce adhesion over time; the manufacturer’s technical service recommends an adhesion test patch on flexible PVC with a Shore A hardness below 70. The tape is not designed for immersion or for sub-slab applications. When used in visible exterior positions, the tape must be covered or painted within 4 weeks because the fleece backing is not permanently UV-stable. Joints on rough-sawn timber and uncoated aerated concrete should be primed with the manufacturer’s compatible acrylic primer according to the product data sheet, as surface porosity otherwise absorbs water from the dispersion and retards film formation. The combination of high initial tack and low volatile organic compound content permits use in occupied buildings where indoor air quality is governed by AgBB or French VOC labelling schemes, but verification of lot-specific emissions must be requested from the manufacturer.