Durable layer composition for in-mold decoration
This invention relates to a durable layer for in-mold decoration. The durable layer is formed from a composition comprising (i) a thermally crosslinkable and photochemically or radically graftable polymer, (ii) a non-ethylenical thermal crosslinker, and (iii) a radiation curable multifunctional monomer or oligomer. The durable layer of the present invention has excellent surface quality with a wider geometric tolerance and can be formed at low cost.
1. A durable layer for in-mold decoration which is formed from a composition comprising:
(i)a thermally crosslinkable and photochemically or radically graftable polymer, wherein said thermally crosslinkable and photochemically or radically graftable polymer is a polyvinyl alcohol derivative,
(ii)a non-ethylenical thermal crosslinker, and
(iii)a radiation curable multifunctional monomer or oligomer.
2. The durable layer of claim 1 , wherein said polyvinyl alcohol derivative is polyvinyl acetal or polyvinyl butyral.
3. The durable layer of claim 1 , wherein said thermally crosslinkable and photochemically and radically graftable polymer is present in the amount of about 10% to about 70% by weight of the total solid content of the composition.
4. The durable layer of claim 3 , wherein said thermally crosslinkable and photochemically and radically graftable polymer is present in the amount of about 20% to about 50% by weight of the total solid content of the composition.
5. The durable layer of claim 1 , wherein said non-ethylenical thermal crosslinker is a multifunctional isocyanate, multifunctional thioisocyanate, multifunctional epoxide, multifunctional aziridine, multifunctional carbodiimide, multifunctional ketenimide or a formaldehyde precondensate.
6. The durable layer of claim 1 , wherein said non-ethylenical thermal crosslinker has more than two same functional groups.
7. The durable layer of claim 1 , wherein said non-ethylenical thermal crosslinker is a multifunctional isocyanate or multifunctional epoxide.
8. The durable layer of claim 1 , wherein said non-ethylenical thermal crosslinker is present in the amount of about 2% to about 60% by weight of the total solid content of the composition.
9. The durable layer of claim 8 , wherein said non-ethylenical thermal crosslinker is present in the amount of about 3% to about 40% by weight of the total solid content of the composition.
10. The durable layer of claim 9 , wherein said non-ethylenical thermal crosslinker is present in the amount of about 5% to about 25% by weight of the total solid content of the composition.
11. The durable layer of claim 1 , wherein said radiation crosslinkable monomer or oligomer is a multifunctional acrylate, multifunctional methacrylate, multifunctional vinyl, multifunctional vinylether, multifunctional vinyl or allyl or multifunctional epoxide.
12. The durable layer of claim 11 , wherein said radiation crosslinkable monomer or oligomer is a multifunctional acrylate.
13. The durable layer of claim 1 , wherein said radiation crosslinkable monomers or oligomer is present in the amount of about 5% to about 80% by weight of the total solid content of the composition.
14. The durable layer of claim 13 , wherein said radiation crosslinkable monomers or oligomer is present in the amount of about 20% to about 50% by weight of the total solid content of the composition.
15. The durable layer of claim 1 , wherein the thermally crosslinkable and photochemically or radically graftable polymer, the non-ethylenical thermal crosslinker, and the radiation curable multifunctional monomer or oligomer are dispersed or dissolved in a solvent.
16. The durable layer of claim 15 , wherein said solvent is methyl ethyl ketone, methyl propyl ketone, cyclohexanone, ethyl acetate, propyl acetate or butyl acetate.
17. The durable layer of claim 1 , wherein the composition further comprises a retarder or quencher.
18. The durable layer of claim 17 , wherein said retarder or quencher is silica, a fatty acid or acid anhydride.
19. The durable layer of claim 1 , wherein the composition further comprises a catalyst or a second thermal crosslinker.
20. The durable layer of claim 19 , wherein said catalyst or the second thermal crosslinker is an organotin, polyamine or polyol.
21. The durable layer according to claim 1 , comprising:
(a) a first network formed from the thermally crosslinkable and photochemically or radically graftable polymer (i) and the non-ethylenical thermal crosslinker (ii), and
(b) a second network formed from the radiation curable multifunctional monomer or oligomer (iii) dissolved or dispersed inside the first network, wherein the first network and the second network form an interpenetration network.
22. A process for forming a durable layer for in-mold decoration according to claim 1 , comprising the steps of:
(a) thermally curing the thermally crosslinkable and photochemically or radically graftable polymer (i) and the non-ethylenical thermal crosslinker (ii) to form a first network with the radiation curable multifunctional monomer or oligomer (iii) dissolved or dispersed inside said first network; and
(b) exposing the radiation curable multifunctional monomer or oligomer (iii) to radiation to form a second network, wherein the first network and the second network form an interpenetration network.