Double-Sided Foam Trim Tape (10mm x 1mm x 50m, choice of colour) Stick it. Mount it. Done. High-density, high-tack double-sided foam tape engineered for the permanent mounting of window and door trims, plastic panels, and signage. Featuring a high-density, closed-cell polyethylene foam carrier, this tape delivers exceptional holding power, moisture resistance, and vibration damping. It offers a clean, professional alternative to mechanical fixings or messy liquid adhesives, ensuring a secure, low-profile bond even on demanding vertical surfaces. Specifically developed for challenging, low-surface-energy plastics like UPVC, polypropylene, and styrene, the premium solvent acrylic adhesive provides an aggressive initial grab and long-term durability. Designed for both indoor and outdoor environments, the 1mm foam conforms to uneven surfaces while resisting UV light, weathering, oxidation, and fungi. The easy-to-remove release liner ensures fast, precise application, making it the ideal solution for automotive, residential, and commercial bonding. Features & Benefits High-Density Foam - Superior internal strength (up to 67kg/m³) for reliable mounting Engineered for Plastics - Optimised for bonding uPVC, polypropylene and styrene All-Weather Resistance - Outstanding protection against UV, weathering and oxidation Hygienic Seal - Formulated to resist fungi and moisture ingress Solvent Acrylic Adhesive - High initial tack for a permanent, high-strength bond Clean Finish - Replaces screws and rivets for a tidy, professional look Vibration Damping - Closed-cell core absorbs shock and fills surface gaps Tested Reliability - Fully compliant with BS 7116 pressure-sensitive tape standards Applications Window and door trim mounting Plastic panel bonding Signage and display assembly Automotive trim attachment General bonding of hard-to-adhere plastics Did you know? High-performance acrylic foam tapes can absorb thermal expansion between materials like uPVC and metal, preventing stress cracks and joint failure where rigid fixings would eventually loosen.