Claims
- 1. In a multi-layer composite of two or more polymeric layers at least one of which is formed from a thermosetting composition, said composite comprising at least a first polymeric layer formed on a substrate and a second polymeric layer over at least a portion of said first polymeric layer, wherein in the absence of a boron-containing compound, said first polymeric layer and said second polymeric layer have poor interlayer adhesion,
the improvement comprising the inclusion of at least one boron-containing compound selected from boric acid, boric acid equivalents, and mixtures thereof in one or both of said first and second polymeric layers in an amount sufficient to improve the interlayer adhesion of said first polymeric layer and said second polymeric layer.
- 2. The composite of claim 1, wherein at least one boron-containing compound is present in said first polymeric layer.
- 3. The composite of claim 1, wherein at least one boron-containing compound is present in said second polymeric layer.
- 4. The composite of claim 1, wherein at least one boron-containing compound is present in said first polymeric layer and in said second polymeric layer.
- 5. The composite of claim 1, wherein said boron-containing compound is selected from at least one of boric acid, boric acid ester, metal borate, derivatives thereof and mixtures thereof.
- 6. The composite of claim 5, wherein said boron-containing compound comprises boric acid.
- 7. The composite of claim 5, wherein said boron-containing compound comprises a boric acid ester selected from at least one of triisopropyl borate, trimethyl borate, triphenyl borate, trimethoxyboroxine, polysiloxane borate, acrylic borate, and mixtures thereof.
- 8. The composite of claim 5, wherein said boron-containing compound comprises a boric acid ester derivative selected from at least one of triethanolamineborate, mannitol borate, n-propranol amine borate, trimetholpropane borate, glycerol borate, and mixtures thereof.
- 9. The composite of claim 1, wherein both the first polymeric layer and the second polymeric layer are formed from thermosetting compositions.
- 10. The composite of claim 1, wherein said boron-containing compound comprises the reaction product formed from the following reactants:
(A) at least one polysiloxane comprising at least one of the following structural units (I): R1nR2mSiO(4−n−m)/2 (I) wherein each R1, which may be identical or different, represents H, OH, a monovalent hydrocarbon group or a monovalent siloxane group; each R2, which may be identical or different, represents a group comprising one or more active hydrogens; and m and n each represent a positive number fulfilling the requirements of 0<m<4; 0<n<4; and 2≦(m+n)<4; and (B) a boron-containing compound selected from at least one of boric acid, boric acid equivalents, and mixtures thereof.
- 11. The composite of claim 10, wherein at least one R2 comprises OR′, where R′ is H or an alkyl group havin 1 to 20 carbon atoms.
- 12. The composite of claim 10, wherein said polysiloxane comprises one or more ungelled non-hydrolyzable organic polysiloxanes having reactive functional groups, said polysiloxane having the following structure (II) or (III):
- 13. The composite of claim 12, wherein the polysiloxane is the reaction product of the following reactants:
(A) at least one silicon hydride-containing polysiloxane having the following structure (V): 5wherein the R groups are selected from H, OH, monovalent hydrocarbon groups, siloxane groups and mixtures thereof, wherein at least one of the groups represented by R is H, and n′ ranges from 0 to 100, such that the mole percent of hydrogen-bonded silicon atoms to non-hydrogen-bonded silicon atoms ranges from 10 to 100 percent; and (B) one or more hydroxyl functional materials comprising at least one primary hydroxyl group and at least one unsaturated bond capable of undergoing hydrosilylation reaction.
- 14. The composite of claim 13, wherein reactant (B) is a hydroxyl functional group-containing allyl ether selected from trimethylolpropane monoallyl ether, pentaerythritol monoallyl ether, trimethylolpropane diallyl ether and mixtures thereof; or an allyl alcohol.
- 15. The composite of claim 10, wherein the first polymeric layer is formed from a thermosetting composition comprising a boron-containing compound present in said thermosetting composition in an amount sufficient to provide an amount of boron ranging from 0.001 to 5 percent by weight, based on weight of total resin solids present in the thermosetting composition.
- 16. The composite of claim 1, wherein one or both of said first polymeric layer and said second polymeric layer comprises a cured layer formed from a thermosetting composition comprising:
(A) at least one film-forming polymer having reactive functional groups; (B) at least one curing agent having functional groups reactive with the functional groups of (A); and (C) at least one boron-containing compound selected from at least one of boric acid, boric acid equivalents, and mixtures thereof.
- 17. The composite of claim 16, wherein the film-forming polymer (A) comprises at least one polymer selected from an acrylic polymer, a polyester polymer, a polyurethane polymer, a polyether polymer, a silicon-based polymer, and mixtures thereof.
- 18. The composite of claim 16, wherein the film-forming polymer (A) comprises an acrylic polymer, a polyester polymer, and mixtures thereof.
- 19. The composite of claim 16, wherein the film-forming polymer (A) comprises an acrylic polymer.
- 20. The composite of claim 16, wherein the film-forming polymer (A) comprises functional groups selected from a hydroxyl group, a carboxyl group, an isocyanate group, a blocked polyisocyanate group, a primary amine group, a secondary amine group, an amide group, a carbamate group, a urea group, a urethane group, a vinyl group, an unsaturated ester group, a maleimide group, a fumarate group, an anhydride group, a hydroxy alkylamide group, and an epoxy group.
- 21. The composite of claim 16, wherein the film-forming polymer comprises functional groups selected from hydroxyl groups, carbamate groups and mixtures thereof.
- 22. The composite of claim 19, wherein the film-forming polymer (A) comprises the residue of a beta-hydroxy group-containing monomer selected from at least one of
(A) the reaction product of an ethylenically unsaturated acid functional monomer and an epoxy functional compound having no ethylenic unsaturation; and (B) the reaction product of an ethylenically unsaturated, epoxy functional monomer and a saturated carboxylic acid.
- 23. The composite of claim 16, wherein the curing agent (B) comprises aminoplast resins, polyisocyanates, blocked polyisocyanates, polycarboxylic acids, polyanhydrides, polyepoxides, polyamines, polyols, and mixtures thereof.
- 24. The composite of claim 21, wherein the curing agent (B) is selected from aminoplast resins, polyisocyanates, blocked isocyanates and mixtures thereof.
- 25. The composite of claim 22, wherein the curing agent (B) is selected from aminoplast resins, polyisocyanates, blocked polyisocyanates and mixtures thereof.
- 26. The composite of claim 22, wherein the curing agent (B) comprises at least one aminoplast resin and at least one blocked isocyanate compound comprising a tricarbamoyl triazine compound.
- 27. The composite of claim 16, wherein both the first polymeric layer and the second polymeric layer are formed from a thermosetting composition.
- 28. The composite of claim 27, wherein the first polymeric layer is formed from a thermosetting composition comprising:
(A) at least one film-forming polymer having reactive functional groups; (B) at least one curing agent having functional groups reactive with the functional groups of (A); and (C) at least one boron-containing compound selected from boric acid, boric acid equivalents, and mixtures thereof.
- 29. The composite of claim 27, wherein the first polymeric layer is formed from a thermosetting composition comprising:
(A) at least one film-forming acrylic polymer comprising functional groups selected from hydroxyl groups, carbamate groups and mixtures thereof; (B) at least one curing agent selected from aminoplast resins, polyisocyanates, blocked polyisocyanates and mixtures thereof; and (C) at least one boron-containing compound selected from boric acid, boric acid equivalents, and mixtures thereof.
- 30. The composite of claim 27, wherein the boron-containing compound (C) is present in the thermosetting composition in an amount sufficient to provide an amount of boron ranging from 0.001 to 5 percent by weight based on total resin solids present in the thermosetting composition.
- 31. The composite of claim 29, wherein the curing agent (B) comprises an aminoplast resin, and a blocked isocyanate comprising a tricarbamoyl triazine compound.
- 32. The composite of claim 27, wherein the boron-containing compound (C) comprises a reaction product formed from the following reactants:
(A) at least one polysiloxane comprising at least one of the following structural units (I): R1nR2 mSiO(4−n−m)/2 (I) wherein each R1 is independently selected from H, a monovalent hydrocarbon group or a siloxane group; each R2 independently is a group comprising OR′, where R′ is H or an alkyl group having 1 to 20 carbon atoms; and m and n each represent a positive number fulfilling the requirements of 0<m<4; 0<n<4; and 2≦(m+n)<4; and (B) a boron-containing compound comprising at least one of boric acid, boric acid equivalents, and mixtures thereof.
- 33. The composite of claim 32, wherein the boron-containing compound (C) comprises boric acid and/or boric acid ester.
- 34. The composite of claim 32, wherein the boron-containing compound (C) is present in the thermosetting composition in an amount sufficient to provide an amount of boron ranging from 0.001 to 5 weight percent based on weight of total resin solids present in the thermosetting composition.
- 35. The composite of claim 27, wherein said first thermosetting composition comprises a base coating composition and second thermosetting composition comprises a top coating composition.
- 36. The composite of claim 35, wherein said first thermosetting composition comprises a substantially pigment-free base coating composition, and said second thermosetting composition comprises a substantially pigment-free top coating composition.
- 37. The composite of claim 35, wherein said first thermosetting composition comprises a pigment-containing base coating composition, and said second thermosetting composition comprises a pigment-containing top coating composition.
- 38. The composite of claim 35, wherein said first thermosetting composition comprises a pigment-containing base coating composition, and said second thermosetting composition comprises a substantially pigment-free coating composition.
- 39. The composite of claim 35, wherein said first thermosetting composition comprises a substantially pigment-free base coating composition, and said second thermosetting composition comprises a pigment-containing top coating composition.
- 40. The composite of claim 36, wherein said second thermosetting composition comprises an adhesive composition.
- 41. The composite of claim 1, wherein said first polymeric layer is formed on a metallic substrate.
- 42. The composite of claim 1, wherein said first polymeric layer is formed on an elastomeric substrate.
- 43. The composite of claim 1, wherein said first polymeric layer is formed on a substrate comprising a substrate and one or more polymeric layers.
- 44. The composite of claim 43, wherein said substrate comprises a substrate and one or more polymeric layers formed from one or more thermosetting film-forming compositions.
- 45. In a curable coating composition used to form a multi-layer composite coating comprising two or more cured coating layers, said multi-layer composite coating comprising at least a first coating layer formed on a substrate and a second coating layer over at least a portion of said first polymeric layer, wherein one or both of said first coating layer and said second coating layer are formed from said curable coating composition, and wherein in the absence of a boron-containing compound, said first coating layer and said second coating layer have poor interlayer adhesion,
the improvement comprising the inclusion in said curable coating composition of a boron-containing compound selected from at least one of boric acid, boric acid equivalents, and mixtures thereof in an amount sufficient to improve the interlayer adhesion between said first coating layer and said second coating layer.
- 46. The coating composition of claim 45, wherein at least one boron-containing compound is present in said first coating layer.
- 47. The coating composition of claim 45, wherein at least one boron-containing compound is present in said second coating layer.
- 48. The coating composition of claim 45, wherein at least one boron-containing compound is present in said first coating layer and in said second coating layer.
- 49. The coating composition of claim 45, wherein said boron-containing compound is selected from at least one of boric acid and boric acid ester.
- 50. The coating composition of claim 45, wherein both the first coating layer and the second coating layer are formed from curable coating compositions.
- 51. The coating composition of claim 45, wherein said boron-containing compound comprises the reaction product of the following reactants:
(A) at least one polysiloxane comprising at least one of the following structural units (I): R1nR2 mSiO(4−n−m)/2 (I) wherein each R1, which may be identical or different, represents H, OH, a monovalent hydrocarbon group or a monovalent siloxane group; each R2, which may be identical or different, represents a group comprising one or more active hydrogens; and m and n each represent a positive number fulfilling the requirements of 0<m<4; 0<n<4; and 2≦(m+n)<4; and (B) at least one boron-containing compound selected from at least one of boric acid, boric acid equivalents, and mixtures thereof.
- 52. The coating composition of claim 51, wherein at least one R2 comprises OR′, where R′ represents H or an alkyl group having 1 to 20 carbon atoms.
- 53. The coating composition of claim 51, wherein said polysiloxane (A) comprises one or more ungelled, organic polysiloxanes having reactive functional groups, said polysiloxane having the following structure (II) or (III):
- 54. The coating composition of claim 53, wherein the polysiloxane comprises the reaction product of the following reactants:
(A) at least one silicon hydride-containing polysiloxane having the following structure (V): 7wherein the R groups are selected from H, OH, monovalent hydrocarbon groups, siloxane groups and mixtures thereof, wherein at least one of the groups represented by R is H, and n′ ranges from 0 to 100, such that the mole percent of hydrogen-bonded silicon atoms to non-hydrogen-bonded silicon atoms ranges from 10 to 100 percent; and (B) one or more hydroxyl functional materials comprising at least one hydroxyl group and at least one unsaturated bond capable of undergoing hydrosilylation reaction.
- 55. The coating composition of claim 54, wherein reactant (B) comprises at least one of an allyl alcohol, and a hydroxyl functional group-containing allyl ether selected format least one of trimethylolpropane monoallyl ether, pentaerythritol monoallyl ether, trimethylolpropane diallyl ether and mixtures thereof.
- 56. The coating composition of claim 45, comprising a boron-containing compound present in an amount sufficient to provide an amount of boron in at least one of said cured coating layers ranging from 0.001 to 5 percent by weight, based on the weight of total resin solids present in said curable coating composition.
- 57. The coating composition of claim 45, wherein one or both of said first coating layer and said second coating layer comprises a cured coating layer formed from a curable coating composition comprising:
(A) at least one film-forming polymer having reactive functional groups; (B) at least one curing agent having functional groups reactive with the functional groups of (A); and (C) at least one boron-containing compound selected from at least one of boric acid, boric acid equivalents, and mixtures thereof.
- 58. The coating composition of claim 57, wherein the film-forming polymer (A) comprises a polymer selected from an acrylic polymer, a polyester polymer, a polyurethane polymer, a polyether polymers a silicon-based polymer, and mixtures thereof.
- 59. The coating composition of claim 57, wherein the film-forming polymer comprises an acrylic polymer, a polyester polymer and mixtures thereof.
- 60. The coating composition of claim 57 wherein the film-forming polymer comprises an acrylic polymer.
- 61. The coating composition of claim 57, wherein the film-forming polymer comprises functional groups selected from a hydroxyl group, a carboxyl group, an isocyanate group, a blocked isocyanate group, a primary amine group, a secondary amine group, an amide group, a carbamate group, a urea group, a urethane group, a vinyl group, an unsaturated ester group, a maleimide group, a fumarate group, an anhydride group, a hydroxy alkylamide group, and an epoxy group.
- 62. The coating composition of claim 57, wherein the film-forming polymer comprises functional groups selected from hydroxyl groups, carbamate groups and mixtures thereof.
- 63. The coating composition of claim 60, wherein the film-forming polymer (A) comprises the residue of a beta-hydroxy group-containing monomer selected from at least one of
(A) the reaction product of an ethylenically unsaturated acid functional monomer and an epoxy functional compound having no ethylenic unsaturation; and (B) the reaction product of an ethylenically unsaturated, epoxy functional monomer and a saturated carboxylic acid.
- 64. The coating composition of claim 57, wherein the curing agent (B) comprises aminoplast resins, polyisocyanates, blocked isocyanates, polycarboxylic acids, polyanhydrides, polyepoxides, polyamines, polyols, and mixtures thereof.
- 65. The composite of claim 62, wherein the curing agent (B) is selected from aminoplast resins, polyisocyanates, blocked polyisocyanates and mixtures thereof.
- 66. The coating composition of claim 63, wherein the curing agent (B) is selected from aminoplast resins, polyisocyanates, blocked polyisocyanates and mixtures thereof.
- 67. The coating composition of claim 66, wherein the curing agent (B) comprises at least one aminoplast resin and at least one blocked polyisocyanate comprising a tricarbamoyl triazine compound.
- 68. The coating composition of claim 57, wherein the first coating layer is formed from a curable coating composition comprising:
(A) at least one film-forming polymer having reactive functional groups; (B) at least one curing agent having functional groups reactive with the functional groups of (A); and (C) at least one boron-containing compound selected from boric acid, boric acid equivalents, and mixtures thereof.
- 69. The coating composition of claim 57, wherein the first coating layer is formed from a curable coating composition comprising:
(A) at least one film-forming acrylic polymer comprising functional groups selected from hydroxyl groups, carbamate groups and mixtures thereof; (B) at least one curing agent selected from aminoplast resins, polyisocyanates, blocked polyisocyanates and mixtures thereof; and (C) at least one boron-containing compound selected from boric acid, boric acidequivalents, and mixtures thereof.
- 70. The coating composition of claim 68, wherein the boron-containing compound (C) is present in the curable coating composition in an amount sufficient to provide an amount of boron ranging from 0.001 to 5 percent by weight based on weight of total resin solids present in the curable coating composition.
- 71. The coating composition of claim 69, wherein the curing agent (B) comprises an aminoplast resin and a blocked polyisocyanate comprising a tricarbamoyl triazine compound.
- 72. The coating composition of claim 67, wherein the boron-containing compound (C) comprises a reaction product formed from the following reactants:
(A) at least one polysiloxane comprising having at least one of the following structural units (I): R1nR2mSiO(4−n−m)/2 (I) wherein each R1 independently is selected from H, a monovalent hydrocarbon group or a siloxane group; each R2 is independently a group comprising OR′, where R′ is H or an alkyl group having 1 to 20 carbon atoms; and m and n each represent a positive number fulfilling the requirements of 0<m<4; 0<n<4; and 2≦(m+n)<4; and (B) at least one boron-containing compound comprising at least one of boric acid, boric acidequivalents, and mixtures thereof.
- 73. The coating composition of claim 72, wherein the boron-containing compound (C) is present in the curable coating composition in an amount sufficient to provide an amount of boron ranging from 0.001 to 5 weight percent, based on weight of total resin solids present in the coating composition.
- 74. The coating composition of claim 68, wherein said first curable coating composition comprises a base coating composition and said second curable coating composition comprises a top coating composition.
- 75. The coating composition of claim 68, wherein said first curable coating composition comprises a substantially pigment-free base coating composition, and said second curable coating composition comprises a substantially pigment-free top coating composition.
- 76. The coating composition of claim 68, wherein said first curable coating composition comprises a pigment-containing base coating composition, and said second curable coating composition comprises a pigment-containing top coating composition.
- 77. The coating composition of claim 68, wherein said first curable coating composition comprises a pigment-containing base coating composition, and said second coating composition comprises a substantially pigment-free coating composition.
- 78. The coating composition of claim 68, wherein said first curable coating composition comprises a substantially pigment-free base coating composition, and said second curable coating composition comprises a pigment-containing top coating composition.
- 79. The coating composition of claim 78, wherein said second curable coating composition comprises an adhesive composition.
- 80. The coating composition of claim 45, wherein said first polymeric layer is formed on a metallic substrate.
- 81. The coating composition of claim 45, wherein said first polymeric layer is formed on an elastomeric substrate.
- 82. The coating composition of claim 45, wherein said first polymeric layer is formed on a substrate comprising a substrate and one or more polymeric layers.
- 83. The coating composition of claim 45, wherein said substrate comprises a substrate and one or more polymeric layers formed from one or more thermosetting film-forming compositions.
- 84. A method for improving the intercoat adhesion of a multi-layer composite comprising two or more polymeric layers, at least one of which is formed from a thermosetting composition, said composite comprising at least a first polymeric layer formed on at least a portion of a substrate, and a second polymeric layer formed over at least a portion of said first polymeric layer, wherein in the absence of a boron-containing compound, said first polymeric layer and said second polymeric layer have poor interlayer adhesion,
the improvement comprising the inclusion of at least one boron-containing compound selected from boric acid, boric acid equivalents, and mixtures thereof in one or both of said first and second polymeric layers in an amount sufficient to improve the interlayer adhesion of said first polymeric layer and said second polymeric layer.
- 85. The method of claim 84, wherein at least one boron-containing compound is present in said first polymeric layer.
- 86. The method of claim 84, wherein at least one boron-containing compound is present in said second polymeric layer.
- 87. The method of claim 84, wherein at least one boron-containing compound is present in said first polymeric layer and in said second polymeric layer.
- 88. The method of claim 84, wherein said boron-containing compound is selected from at least one of boric acid, borate ester, \ and mixtures thereof.
- 89. The method of claim 88, wherein said boron-containing compound comprises boric acid.
- 90. The method of claim 88, wherein said boron-containing compound comprises a borate ester selected from at least one of acrylic borate ester, polysiloxane borate ester, polyester borate ester, polyurathane borate ester, and mixtures thereof.
- 91. The method of claim 88, wherein said boron-containing compound comprises a borborate ester selected from at least one of triethanolamineborate, triisopropyl borate, trimethyl borate, triphenyl borate trimethoxyboroxine triethanolamine borate; mannitol borate; n-propranol amine borate, trimetholpropane borate, glycerol borate and mixtures thereof.
- 92. The method of claim 84, wherein both the first polymeric layer and the second polymeric layer are formed from thermosetting compositions.
- 93. The method of claim 84, wherein said boron-containing compound comprises the reaction product formed from the following reactants:
(A) at least one polysiloxane comprising at least one of the following structural units (I): R1nR2 mSiO(4−n−m)/2 (I) wherein each R1 is independently selected from a monovalent hydrocarbon group or a siloxane group; each R2 independently is a group comprising OR′, where R′ is H or an alkyl group having 1 to 20 carbon atoms; and m and n each represent a positive number fulfilling the requirements of 0<m<4; 0<n<4; and 2≦(m+n)<4; and (B) at least one boron-containing compound selected from at least one of boric acid, boric acidequivalents, and mixtures thereof.
- 94. The method of claim 93, wherein at least one R2 comprises OH.
- 95. The method of claim 93, wherein said polysiloxane comprises one or more ungelled, organic polysiloxanes having reactive functional groups, said polysiloxane having the following structure (II) or (III):
- 96. The method of claim 95, wherein the polysiloxane is a reaction product formed from the following reactants:
(A) a silicon hydride-containing polysiloxane having the following structure (V): 9wherein the R groups are selected from H, OH, monovalent hydrocarbon groups, siloxane groups and mixtures thereof, wherein at least one of the groups represented by R is H, and n′ ranges from 0 to 100, such that the mole percent of hydrogen-bonded silicon atoms to non-hydrogen-bonded silicon atoms ranges from 10 to 100 percent; and (B) one or more hydroxyl functional materials comprising at least one primary hydroxyl group and at least one unsaturated bond capable of undergoing hydrosilylation reaction.
- 97. The method of claim 96, wherein reactant (B) is a hydroxyl functional group-containing allyl ether selected from at least one of trimethylolpropane monoallyl ether, pentaerythritol monoallyl ether, trimethylolpropane diallyl ether and mixtures thereof; or an allyl alcohol.
- 98. The method of claim 84, wherein the first polymeric layer is formed from a thermosetting composition comprising a boron-containing compound present in said thermosetting composition in an amount sufficient to provide an amount of boron ranging from 0.001 to 5 percent by weight, based on weight of total resin solids present in the thermosetting composition.
- 99. The method of claim 84, wherein one or both of said first polymeric layer and said second polymeric layer comprises a cured layer formed from a thermosetting composition comprising:
(A) at least one film-forming polymer having reactive functional groups; and (B) at least one curing agent having functional groups reactive with the functional groups of (A); and (C) at least one boron-containing compound selected from at least one of boric acid, boric acidequivalents, and mixtures thereof.
- 100. The composite of claim 99, wherein the film-forming polymer (A) comprises a polymer selected from acrylic polymers, polyester polymers, polyurethane polymer, polyether polymers, silicon-based polymers, and mixtures thereof.
- 101. The method of claim 99, wherein the film-forming polymer (A) comprises an acrylic polymer, a polyester polymer and mixtures thereof.
- 102. The method of claim 99, wherein the film-forming polymer (A) comprises an acrylic polymer.
- 103. The method of claim 99, wherein the film-forming polymer (A) comprises functional groups selected from at least one of a hydroxyl group, a carboxyl group, an isocyanate group, a blocked polyisocyanate group, a primary amine group, a secondary amine group, an amide group, a carbamate group, a urea group, a urethane group, a vinyl group, an unsaturated ester group, a maleimide group, a fumarate group, an anhydride group, a hydroxy alkylamide group, and an epoxy group.
- 104. The method of claim 103, wherein the film-forming polymer (A) comprises functional groups selected from hydroxyl groups, carbamate groups and mixtures thereof.
- 105. The method of claim 102, wherein the film-forming polymer (A) comprises the residue of a beta-hydroxy group-containing monomer selected from at least one of
(A) the reaction product of an ethylenically unsaturated acid functional monomer and an epoxy functional compound having no ethylenic unsaturation; and (B) the reaction product of an ethylenically unsaturated, epoxy functional monomer and a saturated carboxylic acid.
- 106. The method of claim 99, wherein the curing agent (B) comprises aminoplast resins, polyisocyanates, blocked isocyanates, polycarboxylic acids, polyanhydrides, polyepoxides, polyamines, polyols, and mixtures thereof.
- 107. The method of claim 104, wherein the curing agent (B) is selected from aminoplast resins, polyisocyanates, blocked isocyanates and mixtures thereof.
- 108. The method of claim 105, wherein the curing agent (B) comprises at least one aminoplast resin and at least one blocked isocyanate comprising a tricarbamoyl triazine compound.
- 109. The method of claim 99, wherein both the first polymeric layer and the second polymeric layer are formed from a thermosetting composition.
- 110. The method of claim 109, wherein the first polymeric layer is formed from a thermosetting composition comprising:
(A) at least one film-forming polymer having reactive functional groups; (B) at least one curing agent having functional groups reactive with the functional groups of (A); and (C) at least one boron-containing compound selected from boric acid, boric acidequivalents, and mixtures thereof.
- 111. The method of claim 110, wherein the first polymeric layer is formed from a thermosetting composition comprising:
(A) at least one film-forming acrylic polymer comprising functional groups selected from hydroxyl groups, carbamate groups and mixtures thereof; (B) at least one curing agent selected from aminoplast resins, polyisocyanates, blocked isocyanates and mixtures thereof; and (C) at least one boron-containing compound selected from boric acid, boric acidequivalents, and mixtures thereof.
- 112. The method of claim 110, wherein the boron-containing compound (C) is present in the thermosetting composition in an amount sufficient to provide an amount of boron ranging from 0.001 to 5 percent by weight based on total resin solids present in the thermosetting composition.
- 113. The method of claim 111, wherein the curing agent (B) comprises an aminoplast resin and a blocked isocyanate comprising a tricarbamoyl triazine compound.
- 114. The method of claim 111, wherein the boron-containing compound (C) comprises the reaction product formed from the following reactants:
(A) at least one polysiloxane comprising at least one of the following structural units (I): R1nR2mSiO(4−n−m)/2 (I) wherein each R1 is independently selected from a monovalent hydrocarbon group or a siloxane group; each R2 independently is a group comprising OR′, where R′ is H or an alkyl group having 1 to 20 carbon atoms; and m and n each represent a positive number fulfilling the requirements of 0<m<4; 0<n<4; and 2≦(m+n)<4; and (B) a boron-containing compound comprising at least one of boric acid, boric acidequivalents, and mixtures thereof.
- 115. The method of claim 114, wherein the boron-containing compound (C) comprises boric acid and/or boric acid ester.
- 116. The method of claim 114, wherein the boron-containing compound (C) is present in the thermosetting composition in an amount sufficient to provide an amount of boron ranging from 0.001 to 5 weight percent based on weight of total resin solids present in the thermosetting composition.
- 117. The method of claim 92, wherein said first thermosetting composition comprises a base coating composition and second thermosetting composition comprises a top coating composition.
- 118. The composite of claim 92, wherein said first thermosetting composition comprises a substantially pigment-free base coating composition, and said second thermosetting composition comprises a substantially pigment-free top coating composition.
- 119. The method of claim 92, wherein said first thermosetting composition comprises a pigment-containing base coating composition, and said second thermosetting composition comprises a pigment-containing top coating composition.
- 120. The method of claim 92, wherein said first thermosetting composition comprises a pigment-containing base coating composition, and said second thermosetting composition comprises a substantially pigment-free coating composition.
- 121. The method of claim 92, wherein said first thermosetting composition comprises a substantially pigment-free base coating composition, and said second thermosetting composition comprises a pigment-containing top coating composition.
- 122. The method of claim 121, wherein said second thermosetting composition comprises an adhesive composition.
- 123. A curable coating composition formed from components comprising:
(A) at least one film-forming polymer comprising at least one reactive functional group; (B) at least one reactant comprising at least one functional group that is reactive with the reactive functional group of the polymer (A); and (C) at least one compound selected from borates, aluminates, titanates, zirconates, silicates, siloxanes, silanes, and mixtures thereof, wherein each component is different.
- 124. A coating composition according to claim 123, wherein the compound (c) comprises at least one of a borate and an aluminate.
- 125. A coating composition according to claim 124, wherein the compound (c) comprises aluminum is propoxide.
- 126. A substrate comprising a substrate and a coating composition according to claim 45 over at least a portion of the substrate.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] Reference is made to related U.S. patent application Ser. Nos. ______, ______, ______ and ______, filed concurrently herewith.
Continuations (1)
|
Number |
Date |
Country |
Parent |
09919200 |
Jul 2001 |
US |
Child |
10402823 |
Mar 2003 |
US |