Short-term temperature resistance up to 230 ☌ allows materials to be bonded together prior to powder coating or liquid painting.Įliminate the need for spot welded joints Optimised production - 3M VHB tape resists heat. Can only compensate for minor surface roughness or tolerances) Surface roughness and tolerances are compensated for by the adhesive flowing into the surface (vs. foam adhesive tape)ġ00 % closed cell acrylic adhesive (vs.Can be open/closed cell) It does not harden, but remains flexible and builds up 100 percent wetting.ģM VHB adhesive tape (vs. The viscoelastic structure of the 3M VHB adhesive tape allows it to flow into the surface. The 3M VHB adhesive tape is visco-elastic - While foam adhesive tapes only have a thin film of adhesive on the top or bottom, the 3M VHB adhesive tapes are made of adhesive through and through. The 3M VHB adhesive tape allows you to create smooth side surfaces so that design films can be applied afterwards. Eliminate rivets and screws that can loosen, causing unwanted noise and leaks. Trailer and vehicle construction - Rivet-free for a smoother ride. Tension-free bonding (vs.tension in the bond )Įnergy is absorbed and tension (vs.foam backing prone to cracking ) 3M VHB adhesive tape (vs.foam adhesive tape ) Unlike foam tapes, 3M VHB tapes can be stretched to up to 50% of their thickness without tearing or peeling. A key advantage of 3M VHB adhesive tapes over foam adhesive tapes is their visco-elasticity and therefore their ability to absorb energy and relieve tension. Rain, sun, wind, heat or cold - 3M VHB adhesive tape has proven itself as a reliable connection solution.Ĭomparison of 3M™ VHB™ tape with foam tapes:ģM VHB is visco-elastic. Manufacture the components of your end product to make it even more impact resistant and durable (e.g. has a high adaptability, bonds and seals materials with rough or smooth surfaces has high temperature, weather, UV and solvent resistance has excellent adhesive properties with high tensile and shear strength is a double-sided high-performance adhesive tape made of 100 % closed-cell acrylate adhesive. The continuously developing product range includes 3M VHB adhesive tapes for bonding and sealing a wide variety of materials. Today, 3M VHB tape is used in a wide variety of markets including rail and commercial vehicles, electronics, commercial signage, windows and doors, and household appliances, as well as in the construction, aerospace and furniture industries. Since 1980, the continuous development of innovative 3M VHB solutions and applications has contributed to the success of major companies worldwide. This means that both thin and structured surfaces can be bonded over the entire surface without tension. 3M™ 5952 VHB high performance adhesive tape double sided, mounting tape for automotive and industrial applications.ģM™ VHB™ 5952 - High performance adhesive tape made of high quality acrylic foam, offers optimum conformability to the surface to be bonded. Double sided tapes for consumer use can be found here. Note: This page is about double sided tapes for industrial and manufacturing applications.Learn more about 3M™ VHB™ Tapes and 3M™ Thin Bonding Tapes using the links below, or view specific products using the Products links. Double sided tapes can be customized by a converter to provide the precise shape you need for your final design.Our adhesive experts are happy to work with you to determine which of our thousands of tapes best meets your needs. A double sided tape that has a carrier can be produced with the same adhesive on both sides, or with different adhesives to meet the bonding requirements of different substrates. Similarly, adhesives can meet specific needs from low-tack that allows for repositioning all the way up to a permanent bonding solutions. A carrier that holds adhesive can range from a film as thin as a fraction of a millimeter up to a thick foam that helps damp vibrations. A double sided tape has pressure-sensitive adhesive exposed on both sides, allowing two parts to be bonded together by the tape between them.
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