Abstract:
There is provided a method of attaching an elongate strip to a door frame of the body of a vehicle comprising application of the elongate strip by means of a device comprising:i. a drive means;ii. an application head;iii. a stress control unit positioned between the drive means and application head and comprising one of more sensor units;iv. and a control unit for controlling the drive means,the elongate strip comprises an adhesive tape comprising a foam layer having first and second major sides and a pressure sensitive adhesive layer associated with one of the major sides of the foam layer, the pressure sensitive adhesive comprising a cross-linked rubber and the foam layer comprises an acrylic polymer of one or more alkyl acrylates having an average of 3 to 14 carbon atoms in the alkyl group, the foam layer having a density of at least 540 kg/m3.
Abstract:
The heat-expandable removable pressure-sensitive adhesive tape of the present invention includes at least a blowing agent-containing pressure-sensitive adhesive layer A, a microparticle-containing viscoelastic substrate B, a peelable or peel-assisting film layer C, and a pressure-sensitive adhesive layer D. A multilayer structure containing at least the peelable or peel-assisting film layer C and the pressure-sensitive adhesive layer D is arranged on at least one side of the blowing agent-containing pressure-sensitive adhesive layer A where the blowing agent-containing pressure-sensitive adhesive layer A is in direct contact with the peelable or peel-assisting film layer C. The peelable or peel-assisting film layer C can be removed from the blowing agent-containing pressure-sensitive adhesive layer A by heat treatment after storage in an atmosphere of 75° C. for 8 weeks.
Abstract:
A heat-activatedly bondable sheetlike element having at least one electrically conductive sheetlike structure and at least two layers of different heat-activable adhesives. A first heat-activatable adhesive layer is located substantially on a first side of the electrically conductive sheetlike structure and the second heat-activatable adhesive layer is located substantially on a second side of the electrically conductive sheetlike structure. Activation temperatures for achieving the adhesive properties of the heat-activatable adhesive layers differ from one another less than the melting temperatures of the two heat-activatable adhesive layers.
Abstract:
A method for producing a joined structure involving pressure-bonding a first circuit member and a second circuit member together via a connecting film while the circuit members are being heated, to thereby join the circuit members with each other, wherein the connecting film is defined and includes first and second layers wherein one of the first layer and the second layer is a conductive particle-containing organic resin layer, and the other layer is an insulating organic resin layer containing no conductive particles, and wherein the minimum melt viscosity of the conductive particle-containing organic resin layer is ten times or more greater than the minimum melt viscosity of the insulating organic resin layer.
Abstract:
An adhesive tape for flying splice, having a left and right boundary edge, at least one main carrier and a first layer of self-adhesive on the obverse of the main carrier, the reverse of the main carrier bearing a parting system which is suitable for effecting an adhesive bond to a substrate that can be parted again in such a way that sticky residues are left neither on the reverse of the main carrier nor on the substrate in the region of the parted bond, the parting system being constructed in a particular form as described herein.
Abstract:
Provided is a thermally-conductive double-sided adhesive sheet capable of improving the workability when adherends are bonded to or detached from each other. The thermally-conductive double-sided adhesive sheet includes an adhesive agent layer formed of a thermally-conductive adhesive agent composition formed into a sheet, which composition including a thermally-conductive material and an acrylic polymer component, wherein a strong adhesive agent layer forming one side and a weak adhesive agent layer forming the other side of the thermally-conductive double-sided adhesive sheet are laminated in such a way that the adhesive force of the one side of the thermally-conductive double-sided adhesive sheet to an adherend is stronger than the adhesive force of the other side of the thermally-conductive double-sided adhesive sheet to the adherend.
Abstract:
The present invention relates to a pressure-sensitive adhesive transfer tape, taking the form of a carrierless adhesive tape with an adhesive layer comprising a pressure-sensitive adhesive based on a poly(meth)acrylate copolymer with the following monomers: a1) acrylic acid and/or acrylic esters of the following formula: CH2═C(R1)(COOR2), where R1=H or CH3 and R2 is an alkyl chain with 1-30 C atoms, a2) olefinically unsaturated monomers with functional groups, with monomers of group a1) being present to an extent of at least 50% by weight, based on the total component (a), and with monomers of group a2) being present at 0%-30% by weight, based on the total component (a), and b) a photoinitiator with a fraction of 0%-5% by weight, based on the overall polymer mixture, the pressure-sensitive adhesive being crosslinked to differing extents on its top and bottom faces by actinic radiation, the crosslinking of the pressure-sensitive adhesive being such that on both its top face and its bottom face it has a PSTC-1 adhesion of at least 1 N/cm and a difference between the adhesion on the top face and on the bottom face of at least 30%, preferably of at least 50%, based on the lower of the two adhesions.
Abstract:
A highly pressure-sensitive adhesive optical transparent pressure-sensitive adhesive body or optical transparent pressure-sensitive adhesive laminate which stably provide peeling site selectivity between both sides of the transparent pressure-sensitive adhesive body and a release sheet in the case of pasting, whereas stably and easily express peeling site selectivity between both sides of the transparent pressure-sensitive adhesive body in the case of rework, that is, re-pasting, as well as superior adhesion stability after pasting, and a method for producing the same.An optical transparent pressure-sensitive adhesive body and the like having pressure-sensitive adhesive surface (a) and pressure-sensitive adhesive surface (b) having different pressure-sensitive adhesive property from each other, and being formed with an addition reaction type silicone gel, characterized in that pressure-sensitive adhesive performance (Ga) of pressure-sensitive adhesive surface (a) and pressure-sensitive adhesive performance (Gb) of pressure-sensitive adhesive surface (b) satisfy a relationship of Ga
Abstract:
The tile installation system provides a system for installing an architectural covering material to a substrate surface utilizing a plurality of release sheets where each release sheet has a top side surface and a bottom side surface. A plurality of discrete adhesive substrate portions are positioned on the top side surface of the release sheet, wherein the top side surface of the release sheet has a stronger bonding affinity with the plurality of adhesive substrate portions than the bottom side surface.
Abstract:
A double-faced adhesive film including: a supporting film; a first adhesive layer laminated on one surface of the supporting film; and a second adhesive layer laminated on the other surface of the supporting film, wherein the glass transition temperatures, after curing, of the first adhesive layer and the second adhesive layer are each 100° C. or lower, and the first adhesive layer and the second adhesive layer are the layers capable of being formed by a method including the steps of directly applying a varnish to the supporting film and drying the applied varnish.