Claims
- 1. A coating composition which comprises 100 parts by weight of a monomer mixture (A) comprising 30-98% by weight of a polyfunctional monomer having at least three groups selected from acryloyloxy group and methacryloyloxy group in one molecule and 70-2% by weight of a monomer having the formula: ##STR3## (wherein R.sub.1 is hydrogen atom or methyl, X.sub.1, X.sub.2 . . . Xn and Y.sub.1, Y.sub.2 . . . Ym are the same or different alkylene groups of not more than six carbon atoms or those in which one hydrogen atom is substituted with hydroxyl group, and n and m are integers of 0-5) and 0-10 parts by weight of a photosensitizer, and which can form a crosslink-hardened film excellent in abrasion resistance upon irradiation with actinic radiation in an air atmosphere.
- 2. The coating composition of claim 1, wherein the polyfunctional monomer is at least one polyfunctional (meth)acrylate selected from the group consisting of poly(meth)acrylates of mono or polypentaerythritol having at least three methacryloyloxy groups and/or acryloyloxy groups in one molecule wherein said mono or polypentaerythritol has the formula: ##STR4## (wherein at least three of X.sub.11, X.sub.12, X.sub.13, X.sub.22, X.sub.23, . . . Xn.sub.2, Xn.sub.3 and X.sub.14 are CH.sub.2 .dbd.CR--COO--group and the remainder are -OH group, n is an integer of 1-5 and R is hydrogen atom or methyl group).
- 3. The coating composition of claim 2, wherein the polyfunctional monomer is selected from the group consisting of pentaerythritol tri and tetra(meth)acrylate.
- 4. The coating composition of claim 2, wherein the polyfunctional monomer is selected from the group consisting of dipentaerythritol tri, tetra, penta and hexa(meth)acrylate.
- 5. The coating composition of claim 1, which additionally contains at least one monofunctional monomer having one acryloyloxy group or methacryloyloxy group in one molecule and having a boiling point of at least 150.degree. C. at normal pressure and a viscosity of not more than 20 centipoises at 20.degree. C. and in which the group bonded to the (meth)acryloyloxy groups has an ether bond or hydroxyl group.
- 6. The coating composition of claim 1 which comprises 5-90 parts by weight of said monomer mixture and 95-10 parts by weight of at least one organic solvent (B) which is mixed with said monomer mixture (A) to form a homogeneous solution.
- 7. The coating composition of claim 6, wherein the polyfunctional monomer is at least one polyfunctional (meth)acrylate selected from the group consisting of poly(meth)acrylates of mono or polypentaerythritol having at least three methacryloyloxy groups and/or acryloyloxy groups in one molecule wherein said mono or polypentaerythritol has the formula: ##STR5## (wherein at least three of X.sub.11, X.sub.12, X.sub.13, X.sub.22, X.sub.23, . . . Xn.sub.2, Xn.sub.3 and X.sub.14 are Ch.sub.2 .dbd.CR--COO--group and the remainder are -OH group, n is an integer of 1-5 and R is hydrogen atom or methyl group).
- 8. The coating composition of claim 7, wherein the polyfunctional monomer is selected from the group consisting of pentaerythritol tri and tetra(meth)acrylate.
- 9. The coating composition of claim 7, wherein the polyfunctional monomer is selected from the group consisting of dipentaerythritol tri, tetra, penta and hexa(meth)acrylate.
- 10. The coating composition of claim 6, wherein said composition additionally contains at least one monofunctional monomer having one acryloyloxy group or methacryloyloxy group in one molecule and having a boiling point of at least 150.degree. C. at normal pressure and a viscosity of not more than 20 centipoises at 20.degree. C. and in which the group bonded to the (meth)acryloyloxy group has an ether bond or hydroxyl group.
- 11. The coating composition of claim 6, wherein the organic solvent has a boiling point of 50.degree.-200.degree. C.
- 12. The coating composition of claim 6, which has a viscosity of not more than 10 centripoises at 25.degree. C.
- 13. A method for producing an abrasion resistant synthetic resin molded product, which comprises coating on the surface of a synthetic resin molded product a coating composition which comprises 100 parts by weight of a monomer mixture (A) comprising 30-98% by weight of a polyfunctional monomer having at least three groups selected from acryloyloxy group and methacryloyloxy group in one molecule and 70-2% by weight of a monomer having two groups selected from acryloyloxy group and methacryloyloxy group and 0-10 parts by weight of a photosensitizer and which can form a crosslink-hardened film excellent in abrasion resistance by irradiation with actinic radiation in an air atmosphere and then irradiating the coating film with actinic radiation to form a crosslink-hardened film of 1-30.mu. thick on the surface of the synthetic resin molded product, wherein said monomer having said two groups has the formula: ##STR6## (wherein R.sub.1 is hydrogen atom or methyl, X.sub.1, X.sub.2 . . . Xn and Y.sub.1, Y.sub.2 . . . Ym are the same or different alkylene groups of not more than six carbon atoms or those in which one hydrogen atom is substituted with hydroxyl group, and n and m are integers of 0-5).
- 14. The method of claim 13, wherein the polyfunctional monomer is at least one polyfunctional (meth)acrylate selected from the group consisting of poly(meth)acrylates of mono or polypentaerythritol having at least three methacryloyloxy groups and/or acryloyloxy groups in one molecule wherein said mono or polypentaerythritol has the formula: ##STR7## (wherein at least three of X.sub.11, X.sub.12, X.sub.13, X.sub.22, X.sub.23, . . . Xn.sub.2, Xn.sub.3 and X.sub.14 are CH.sub.2 .dbd.CR--COO-- group and the remainder are -OH group, n is an integer of 1-5 and R is hydrogen atom or methyl group).
- 15. The method of claim 14, wherein the polyfunctional monomer is selected from the group consisting of pentaerythritol tri and tetra(meth)acrylate.
- 16. The method of claim 14, wherein the polyfunctional monomer is selected from the group consisting of dipentaerythritol tri, tetra, penta and hexa(meth)acrylate.
- 17. The method of claim 13, wherein the said composition additionally contains at least one monofunctional monomer having one acryloyloxy group or methacryloyloxy group and having a boiling point of at least 150.degree. C. at normal pressure and a viscosity of not more than 20 centipoises at 20.degree. C. and in which the group bonded to the (meth)acryloyloxy groups has an ether bond or hydroxyl group.
- 18. The method of claim 13, wherein the synthetic resin molded product is methacrylic resin, polycarbonate resin, or polyallyl diglycol carbonate resin.
- 19. The method of claim 13, wherein said coating composition comprises 5-90 parts by weight of said monomer mixture and 95-10 parts by weight of at least one organic solvent which is mixed with said monomer mixture to form a homogeneous solution.
- 20. The method of claim 19, wherein the polyfunctional monomer is at least one polyfunctional (meth)acrylate selected from the group consisting of poly(meth)acrylates of mono of polypentaerythritol having at least three methacryloyloxy groups and/or acryloyloxy groups in one molecule wherein said mono or polypentaerythritol has the formula: ##STR8## (wherein at least three of X.sub.11, X.sub.12, X.sub.13, X.sub.22, X.sub.23, . . . Xn.sub.2, Xn.sub.3 and X.sub.14 are CH.sub.2 .dbd.CR--COO-- group and the remainder are --OH group, n is an integer of 1-5 and R is hydrogen atom or methyl group).
- 21. The method of claim 20, wherein the polyfunctional monomer is selected from the group consisting of pentaerythritol tri and tetra(meth)acrylate.
- 22. The method of claim 20, wherein the polyfunctional monomer is selected from the group consisting of dipentaerythritol tri, tetra, penta and hexa(meth)acrylate.
- 23. The method of claim 19, wherein said composition contains at least one monomer having one acryloyloxy group or methacryloyloxy group in one molecule and having a boiling point of at least 150.degree. C. at normal pressure and a viscosity of not more than 20 centipoises at 20.degree. C. and in which the group bonded to the (meth)acryloyloxy groups has an ether bond or hydroxyl group.
- 24. The method of claim 19, wherein the organic solvent has a boiling point of 50.degree.-200.degree. C.
- 25. The method of claim 19, which comprises coating the coating composition on the surface of the resin molded product, volatilizing and releasing at least 50% by weight of the organic solvent contained in the coated film and then irradiating the film with actinic radiation to form a crosslink-hardened film of 1-30.mu. thick on the surface of the molded product.
- 26. The method of claim 19, which comprises coating on the surface of the synthetic resin molded product the coating composition having a viscosity of not more than 10 centipoises at 25.degree. C. by dipping method and forming a crosslink-hardened film of 1-9.mu. thick.
- 27. The method of claim 19, wherein the synthetic resin molded product is methacrylic resin, polycarbonate resin or polyallyl diglycol carbonate resin molded product.
Priority Claims (1)
Number |
Date |
Country |
Kind |
52/19038 |
Feb 1977 |
JPX |
|
Parent Case Info
This is a division of application Ser. No. 878,830 filed Feb. 17, 1978 now U.S. Pat. No. 4,199,421.
US Referenced Citations (11)
Foreign Referenced Citations (5)
Number |
Date |
Country |
4842211 |
Dec 1973 |
JPX |
4912886 |
Mar 1974 |
JPX |
4922951 |
Jun 1974 |
JPX |
50119869 |
Sep 1975 |
JPX |
1198259 |
Jul 1970 |
GBX |
Divisions (1)
|
Number |
Date |
Country |
Parent |
878830 |
Feb 1978 |
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