FOAMED ADHESIVE, MORE PARTICULARLY PRESSURE-SENSITIVE ADHESIVE, PROCESS FOR THE PRODUCTION AND ALSO THE USE THEREOF
Adhesive, more particularly pressure-sensitive adhesive, which comprises expanded microballoons, the bond strength of the adhesive comprising the expanded microballoons being reduced by not more than 30%, preferably not more than 20%, more preferably 10%, in comparison to the bond strength of an adhesive of identical coatweight and formula which has been defoamed by the destruction of the voids produced by the expanded microballoons.
1 . Pressure-sensitive adhesive, which comprises expanded microballoons, the bond strength of the adhesive comprising the expanded microballoons being reduced by not more than 30% in comparison to the bond strength of an adhesive of identical coatweight and formula which has been defoamed by the destruction of the voids produced by the expanded microballoons.
2 . Adhesive according to claim 1 , wherein the bond strength of the adhesive comprising the expanded microballoons is not reduced in comparison to the bond strength of an adhesive of identical coatweight and formula which has been defoamed by the destruction of the voids produced by the expanded microballoons.
3 . Adhesive according to claim 1 wherein the bond strength of the adhesive comprising the expanded microballoons is higher in comparison to the bond strength of an adhesive of identical coatweight and formula which has been defoamed by the destruction of the voids produced by the expanded microballoons.
4 . Adhesive according to claim 1 , wherein the adhesive has a surface roughness of less than or equal to 10 μm.
5 . Adhesive according to claim 1 wherein the amount of unfoamed microballoons in the adhesive prior to the foaming of the microballoons is between greater than 0% and 20% by weight based on weight of the overall mixture of the adhesive.
6 . Adhesive according to claim 1 wherein the ratio of the density of the adhesive foamed by the microballoons to the density of the adhesive of identical coatweight and formula defoamed by the destruction of the voids produced by the expanded microballoons is less than 0.8.
7 . Adhesive according to claim 1 wherein the adhesive is composed of natural rubber, of acrylonitrile-butadiene rubber, of butyl rubber, of styrene-butadiene rubber, of styrene block copolymers or of a polyolefin, of ethylene-vinyl acetate, of acrylates or of a compound of the stated polymers.
8 . Adhesive according to claim 1 wherein the adhesive is blended with one or more additives selected from the group consisting of ageing inhibitors, crosslinkers, light stabilizers, ozone protectants, fatty acids, resins, plasticizers, vulcanizing agents, electron beam curing promoters, UV initiators and/or with one or more fillers selected from the group consisting of carbon black, zinc oxide, silica, silicates, chalk and solid or hollow beads.
9 . Adhesive according to claim 1 wherein the adhesive is crosslinked wholly or partly chemically or physically by means of ionizing radiation.
10 . Adhesive according to claim 1 wherein the microballoons have a diameter at 25° C. of 3 μm to 40 μm, and/or a diameter after temperature exposure of 20 μm to 200 μm.
11 . Process for producing a pressure-sensitive adhesive which comprises expanded microballoons, wherein
the constituents for forming the adhesive are mixed in a first mixing assembly, the mixed adhesive from the first mixing assembly is transferred into a second mixing assembly, into which, at the same time, unexpanded microballoons are fed, the microballoons are expanded in the second mixing assembly or on exit from the second mixing assembly, the adhesive mixture together with the expanded microballoons is shaped to a layer in a shaping assembly, and the adhesive mixture together with the expanded microballoons is optionally applied to a weblike backing material.
12 . Process for producing a pressure-sensitive adhesive which comprises expanded microballoons, wherein
the constituents for forming the adhesive such are mixed with unexpanded microballoons in a first mixing assembly under superatmospheric pressure and are heated to a temperature below the expansion temperature of the microballoons,
the mixed adhesive from the first mixing assembly is transferred to a second assembly and heated to expansion temperature of the microbaloons under superatmospheric pressure, the microballoons are expanded in the second assembly or on exit from the second assembly, the adhesive mixture together with the expanded microballoons is shaped to a layer in a roll applicator, and the adhesive mixture together with the expanded microballoons is optionally applied to a weblike backing material or release material.
13 . Process for producing a pressure-sensitive adhesive which comprises expanded microballoons, wherein
the constituents for forming the adhesive such as polymers, resins or fillers and the unexpanded microballoons are mixed in a first mixing assembly and heated to the expansion temperature of the microballons under superatmospheric pressure,
the microballoons are expanded on exit from the mixing assembly, the adhesive mixture together with the expanded microballoons is shaped to a layer in a roll applicator, and the adhesive mixture together with the expanded microballoons is optionally applied to a weblike backing material or release material.
14 . Process for producing a pressure-sensitive adhesive according to claim 11 wherein the adhesive is shaped in a roll applicator and applied to the backing material.
15 . Process for producing a pressure-sensitive adhesive according to claim 11 wherein the layer thickness of the foamed adhesive shaped in the shaping assembly is less than or equal to the diameter of the expanded microballoons.
16 . Process for producing a pressure-sensitive adhesive according to claim 11 , wherein the thickness of the adhesive in an adhesive tape on a weblike backing material is between 20 μm and 3000 μm.
17 . Process according to claim 11 wherein the first mixing assembly is a continuous assembly, the first mixing assembly is a discontinuous assembly, the second mixing assembly is a single-screw extruder and/or the shaping assembly in which the adhesive together with the expanded microballoons is shaped to a backing layer is a calender, a roll applicator or a nip formed by a roll and a stationary doctor blade.
18 . Pressure-sensitive self-adhesive, obtained by the process claim 11 .
19 . A single-sided or double-sided adhesive tape comprising the pressure sensitive of claim 1 .
20 . The adhesive tape of claim 19 , comprising a backing of a film, a fabric or a paper.
21 . The adhesive of claim 19 applied to a release film or a release paper.
22 . Process for producing a pressure-sensitive adhesive according to claim 12 , wherein the adhesive is shaped in a roll applicator and applied to the backing material.
23 . Process for producing a pressure-sensitive adhesive according to claim 13 , wherein the adhesive is shaped in a roll applicator and applied to the backing material.
24 . Process for producing a pressure-sensitive adhesive according to claim 12 , wherein the layer thickness of the foamed adhesive shaped in the shaping assembly is less than or equal to the diameter of the expanded microballoons.
25 . Process for producing a pressure-sensitive adhesive according to claim 13 , wherein the layer thickness of the foamed adhesive shaped in the shaping assembly is less than or equal to the diameter of the expanded microballoons.
26 . Process for producing a pressure-sensitive adhesive according to claim 12 , wherein the thickness of the adhesive in an adhesive tape on a weblike backing material is between 20 μm and 3000 μm.
27 . Process for producing a pressure-sensitive adhesive according to claim 13 , wherein the thickness of the adhesive in an adhesive tape on a weblike backing material is between 20 μm and 3000 μm.
28 . Process according to claim 12 , wherein the first mixing assembly is a continuous assembly, the first mixing assembly is a discontinuous assembly, the second mixing assembly is a single-screw extruder and/or the shaping assembly in which the adhesive together with the expanded microballoons is shaped to a backing layer is a calender, a roll applicator or a nip formed by a roll and a stationary doctor blade.
29 . Process according to claim 13 , wherein the first mixing assembly is a continuous assembly, the first mixing assembly is a discontinuous assembly, the second mixing assembly is a single-screw extruder and/or the shaping assembly in which the adhesive together with the expanded microballoons is shaped to a backing layer is a calender, a roll applicator or a nip formed by a roll and a stationary doctor blade.
30 . Pressure-sensitive self-adhesive, obtained by the process of claim 12 .
31 . Pressure-sensitive self-adhesive, obtained by the process of claim 13 .