Directly adhering, transparent heat-sealable binder for the coating and sealing of transparent plastics foils
A transparent, heat-sealable coating for transparent PET packaging foils can be provided by using a heat-sealable lacquer based on styrene-containing copolymers, on poly(meth)acrylates, on at least one polyester and optionally on a tackifier, and also the process for the sealing of a foil coated with this lacquer. It is surprising here that, despite the use of a rubber based on styrene-containing polymers that is not optically compatible with polyesters and polymethacrylate, the transparency of the heat-sealable coatings is still very high.
1. A heat-sealable coating system, comprising:
a film-forming dispersion which comprises a total of from 25% by weight to 65% by weight of a mixture of components A, B and C,
wherein said mixture comprises
from 15% to 50% by weight of a polyester or polyester mixture as polymer A,
from 15% to 50% by weight of a poly(meth)acrylate or mixture of two or more poly(meth)acrylates as polymer B, and
from 15% to 40% by weight of one or more rubbers comprising repeating styrene units as polymer C,
based in each case on the entire composition of the polymers A, B and C,
wherein components A, B and/or C may optionally entirely or to some extent be in a form of graft copolymers AB or CB,
wherein polymer C is an SEBS, a grafted SEBS, an SEB, a copolymer comprising styrene and of (meth)acrylates having at least 12 carbon atoms as alkyl moiety, a copolymer comprising styrene and (meth)acrylates having a hydrogenated, hydroxy-terminated polybutadiene as the alkyl moiety or a mixture of at least two of these components,
and wherein the solids content of the dispersion is from 25 to 70% by weight.
2. The coating system according to claim 1 , wherein the polymer A is a polyester A1 with number-average molar mass Mn from 700 to 5000 g/mol produced with copolycondensation of itaconic acid, a polyester A2 with number-average molar mass Mn from 5000 to 50 000 g/mol having no double bonds or a mixture of the two polyesters A1 and A2.
3. The coating system according to claim 2 , wherein polymer A is a mixture of the two polyesters A1 and A2, wherein
the number-average molar mass Mn of polyester A1 is from 2000 to 4000 g/mol,
the number-average molar mass Mn of polyester A2 is from 10 000 to 35 000 g/mol, and wherein the coating system comprises, based on the entire composition of the polymer A, B, C, inclusive of the potential constituents AB and CB, from 1% by weight to 15% by weight of the polyester A1 and from 10% by weight to 50% by weight of the polyester A2.
4. The coating system according to claim 2 , wherein the itaconic-acid-containing polyester A1 comprises a proportion of from 0.1 to 20 mol % of itaconic acid, based on the total quantity of polycarboxylic acids copolycondensed.
5. The coating system according to claim 1 , comprising the polymers AB and CB, wherein the polymer AB and the polymer CB are graft copolymers having a main chain of polyester and of rubber, respectively and having pendant chains made of poly(meth)acrylate.
6. The coating system according to claim 1 , wherein component C is an SEBS, an SEBS grafted with acrylic acid, an SEBS grafted with methacrylic acid, an SEBS grafted with maleic acid and/or with maleic anhydride, or is a mixture of SEBS and SEB.
7. The coating system according to claim 1 , wherein component C comprises a proportion of from 8 to 45% by weight of repeating styrene units.
8. The coating system according to claim 1 , wherein the melt flow index of component C, measured with 5 kg load at a temperature of 200° C. in accordance with ISO 1133-1, is from 1 to 40 g/10 min.
9. The coating system according to claim 1 , wherein the dispersion comprises, in total, from 35% by weight to 60% by weight of a mixture of components A, B and C, where this mixture comprises from 25% by weight to 45% by weight of a polyester or polyester mixture as polymer A,
from 25% by weight to 45% by weight of a poly(meth)acrylate or mixture of two or more poly(meth)acrylates as polymer B and
from 20% by weight to 35% by weight of one or more rubbers comprising repeating styrene units as polymer C, based in each case on the entire composition of the polymer A, B and C.
10. The coating system according to claim 1 , wherein the dispersion comprises, in total, from 40% by weight to 55% by weight of a mixture of components A, B and C, where this mixture comprises from 30% by weight to 40% by weight of a polyester or polyester mixture as polymer A,
from 30% by weight to 40% by weight of a poly(meth)acrylate or mixture of two or more poly(meth)acrylates as polymer B and
from 25% by weight to 30% by weight of one or more rubbers comprising repeating styrene units as polymer C, based in each case on the entire composition of the polymer A, B and C.
11. The coating system according to claim 1 , wherein the polymer B is a copolymer obtained via copolymerization of a monomer mixture comprising components selected from (meth)acrylic acid, hydroxyethyl (meth)acrylate, hydroxypropyl (meth)acrylate, methyl (meth)acrylate, n- and/or isopropyl (meth)acrylate, n-butyl (meth)acrylate and C8- to C22-fatty alcohol esters of (meth)acrylic acid.
12. A process for the sealing of polyester foils or PET-coated foil to polystyrene, polyester and polyvinyl chloride, said process comprising:
coating the foil with a coating system according to claim 1 , to obtain a coating,
drying the coating, and
placing the coated side of the foil onto the material that is to be sealed, made of polystyrene, polyester or PVC, and
sealing at a temperature of from 120 to 220° C. and under a pressure of from 1 to 6 MPa for a period of from 0.1 to 1.5 s.