HOMOGENEOUSLY CROSS-LINKED CONTACT ADHESIVE STRIP WITHOUT A CARRIER, ESPECIALLY A TRANSFER ADHESIVE STRIP
The invention describes a double-sided, carrierless self-adhesive tape which can be used in particular for achieving very durable adhesive bonding of a variety of articles. This double-sided, carrierless self-adhesive tape is composed of a homogeneously crosslinked pressure-sensitive acrylate hotmelt composition of single-layer construction, which may have been lined with release materials such as siliconized release papers or release films. The double-sided, carrierless pressure-sensitive adhesive tape is characterized in that it is composed of a photoinitiator-free, thermally homogeneously crosslinked acrylate hotmelt which is crosslinked predominantly by way of urethane units. It is notable in particular for the fact that it is homogeneously chemically crosslinked through the layer and, in contrast to acrylate layers crosslinked by radiation (UV/EBC), does not exhibit any profile of crosslinking through the layer. It can be used in particular as an adhesive transfer tape for the permanent attachment of articles to a variety of substrates.
1 . A double-sided self-adhesive tape having at least one layer of a photoinitiator-free pressure-sensitive acrylate hotmelt adhesive, wherein the pressure-sensitive acrylate hotmelt adhesive layer has homogeneous crosslinking, in that there is no profile of crosslinking through the layer.
2 . The self-adhesive tape of claim 1 , wherein said tape is a single layer of said photoinitiator free pressure-sensitive acrylate hotmelt adhesive.
3 . The self-adhesive tape of claim 2 , wherein said crosslinking is a thermal crosslinking.
4 . The self-adhesive tape of of claim 1 , having crosslinking sites comprising urethane units.
5 . The self-adhesive tape of claim 1 comprising a temporary carrier of release material, arranged on the pressure-sensitive acrylate hotmelt adhesive layer.
6 . The self-adhesive tape of claim 1 wherein the thickness of the pressure-sensitive acrylate hotmelt adhesive layer is 50 to 5000 μm.
7 . A method of producing a self-adhesive tape having at least one layer of a photoinitiator-free pressure-sensitive acrylate hotmelt adhesive, in which at least one crosslinker is added in the melt to a polyacrylate copolymer (“polyacrylate”) based on acrylic esters and/or methacrylic esters, and the polyacrylate with the crosslinker added is conveyed to a coating unit, where coating takes place onto a temporary carrier material and crosslinking takes place after coating, wherein the crosslinker is a thermal crosslinker and a part of the acrylic esters and/or methacrylic esters contains primary hydroxyl groups.
8 . The method of claim 7 , wherein the thermal crosslinker is added in an extruder.
9 . The method of claim 7 , wherein said at least one thermal crosslinker is at least one isocyanate.
10 . The method of claim 7 , wherein the temperature of the polyacrylate when the thermal crosslinker is added is between 60° C. and 120° C.
11 . The method of claim 7 , wherein the residual monomer content of the polyacrylate when the crosslinker is added is not more than 1% by weight, based on the polymer.
12 . The method of claim 7 , wherein the fraction of the acrylic esters and/or methacrylic esters containing primary hydroxyl groups is up to 25% by weight, based on the polyacrylate.
13 . The method claim 7 , wherein the polyacrylate is the product of following reactant mixture:
a1) 65% to 99% by weight acrylic esters and/or methacrylic esters of the general formula
CH 2 =CH ( R I )( COOR II )
where R I =H or CH 3
R II =alkyl chain having 1 to 20 carbon atoms,
a2) 1% to 20% by weight acrylates and/or methacrylates whose alcohol component contains at least one primary hydroxyl group, and/or vinyl compounds which are copolymerizable with acrylates and contain at least one primary hydroxyl group, with a fraction of 1% to 20% by weight, and
a3) if the fractions of a1) and a2) do not add up to 100% by weight, 0% to 15% by weight olefinically unsaturated copolymerizable monomers containing functional groups.
14 . A transfer tape formed of the self-adhesive tape of claim 1 .
15 . The self-adhesive tape of claim 6 , wherein said thickness is 100 to 2000 μm.
16 . The method of claim 9 , wherein said at least one isocyanate is at least one trimerized isocyanate.
17 . The method of claim 16 , wherein said at least one trimerized isocyanate is at least one aliphatic and/or amine-deactivated isocyanate.
18 . The method of claim 10 , wherein said temperature is between 70° C. and 100° C.