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Fermoflex 1352 Carpet Tape. This double-sided tape consists of a polyester film carrier, layered on both sides with different adhesives. The adhesive on the covered side of the tape has excellent permanent adhesive qualities.
This double-sided tape consists of a textile carrier, layered on both sides with modified dispersion acrylate adhesive. The adhesives is largely resistant to plasticisers.
Orabond 1397PP Industrial Tape. This double-sided tape consists of a polyester film carrier, layered on both sides with a modified solvent acrylate adhesive.
ORABOND 3331TG Industrial Tape forms part of our AM2 range of high performance double coated tapes. It consists of a hard PVC film carrier, coated on both sides with a modified solvent acrylate adhesive. It has a very good resistance against UV radiation, extreme temperatures, chemicals, solvents and humidity.
This double-sided tape consists of a 12 micron polyester film coated on both sides with an acrylic adhesive. This product is also available with liner on both sides as ORABOND 4040D. Mounting film for adhesion on smooth surfaces in advertising applications requiring permanent adhesion.
This tape consists of a white, closed-cell polyethylene foam coated on both sides with a solvent pure acrylate adhesive. The solvent pure acrylate adhesive also guarantees a high final strength and is resistant to extreme temperatures, plasticisers, acids, leaches and solvents.
This mounting tape consists of a white, closed-cell polyethylene foam coated on both sides with a modified solvent acrylate adhesive.
This mounting tape consists of a white, closed-cell polyethylene foam coated on both sides with a modified solvent acrylate adhesive.
This tape consists of a black, closed-cell polyethylene foam coated on both sides with a modified solvent acrylate adhesive. The modified solvent acrylate adhesive possesses a good adhesion on difficult substrate surfaces.
The viscoelastic properties of the UHB tapes allow them to balance the occurring tensions caused by different thermal expansion coefficients of bounded materials. Further, the adhesive flows into the microscopic material surfaces achieving through an excellent ‘wet out’ extremely high bonding results.
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