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Automotive shock-absorbing sealants and graphite heat-dissipating pressure-sensitive adhesive sheets (2019)
Dimer acid type polyamide adhesive, thermally conductive potting adhesive and hot melt adhesive for bonding polyethylene to metal (2019)
Hot melt adhesive for bonding polyethylene to metal
Graphite heat dissipation pressure sensitive adhesive sheet
Natural rubber adhesives for fabrics and leather
Silicone flat sealant, silicone sealant for appliances and hot melt adhesive for shoes (2018)
Double-sided pressure sensitive adhesive tape
Ethylene vinyl acetate (EVA) film
α-Ethyl cyanoacrylate instant adhesive
Silicone sealant for electrical appliances
Two-component polyurethane adhesive for composite flexible packaging
This document specifies methods to measure the breaking strength and elongation at break of a self adhesive tape when it is subjected to a tensile force sufficient to cause it to break. These test methods describe a procedure for testing 12 mm or 24 mm wide samples cut from supplied rolls of self adhesive tapes. Alternatively rolls of self adhesive tape up to 50 mm wide can be directly tested in their original width. In these circumstances the practical breaking strength and elongation will be typical of the manufacturer’s cut edges. When newly cut sample pieces are tested, because of the better cutting of the edges, the results can be higher than would be found on commercial tape.
Self adhesive tapes - Measurement of breaking strength and elongation at break
This document specifies a series of methods for the determination of the ability of a pressure sensitive tape to remain adhered under a constant load applied parallel to the surfaces of the tape and substrate. This document contains: — method A: Self adhesive tapes – Measurement of shear adhesion to a vertical standard steel panel; — method B: Self adhesive tapes – Measurement of shear adhesion to a vertical panel covered with NIST SRM 1810A1) standard fibreboard; — method C: Self adhesive tapes – Measurement of shear adhesion to a vertical panel covered with a fibreboard agreed upon by the buyer and seller; — method D: Self adhesive tapes – Measurement of shear adhesion of filament reinforced tape applied to a horizontal standard steel panel; — method E: Self adhesive tapes – Measurement of shear adhesion of filament reinforced tape applied to a horizontal panel covered with NIST SRM 1810A1) standard fibreboard; — method F: Self adhesive tapes – Measurement of shear adhesion of filament reinforced tape applied to a horizontal panel covered with a fibreboard agreed upon by the buyer and seller; — method G: Self adhesive tapes – Measurement of shear adhesion to a vertical standard steel panel at elevated temperature after a 10 min dwell time.
Self adhesive tapes - Measurement of static shear adhesion
This document specifies a series of methods for the determination of peel adhesion properties of self adhesives tapes. This document contains: — Method 1: Self adhesive tapes – Measurement of peel adhesion from stainless steel at an angle of 180°; — Method 2: Self adhesive tapes – Measurement of peel adhesion from its own backing at an angle of 180°; — Method 3: Self adhesive tapes – Measurement of peel adhesion of double sided and transfer tapes at an angle 180°; — Method 4: Self adhesive tapes – Measurement of adhesion of the liner to an adhesive tape at an angle of 180°. Annexes A and B specify further variations in the testing protocol according to specific conditions. A guide to the use of these methods is given in Table 1. Table 1 — Methods and annexes Method Angle of peel Method 1180° Adhesion to backing 90° Adhesion to steel Temperature of test 23 °C Low temperature — Annex A — Annex A 90° Annex B Method 3180° 90° — Annex B Annex A Method 4180° — Annex A Method 2 Adhesion of double sided and transfer tape Adhesion of liner 180° Annex B 90° Annex B - — — - NOTE 1 These methods provide a means of assessing the uniformity of the adhesion of a given type of self adhesive tape. The assessment may be within a roll of tape, between rolls or between production lots. NOTE 2 Variations in the tape backing and adhesive affect the response. Therefore these methods cannot be used to pinpoint the specific cause(s) of non uniformity. NOTE 3 These test methods may not be appropriate to test tapes having either relatively stiff backings, stiff liners or backing showing high stretch at low forces. These characteristics will result in a high variability for the test response which is not a true indication of the real nature of the adhesive bond. 1
Self adhesive tapes - Determination of peel adhesion properties
Epoxy structural adhesives for wind turbine blades
One-component heat-curing epoxy structural adhesive
One-component heat-curing and epoxy structural adhesives for wind turbine blades (2017)
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