Claims
- 1. A coating composition formed from components comprising:
(a) at least one polysiloxane comprising at least one reactive functional group, the 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 at least one reactive functional group, wherein m and n fulfill the requirements of 0<n<4, 0<m<4 and 2≦(m+n)<4; (b) at least one polyol having a hydroxyl value ranging from 100 to 200; and (c) at least one reactant comprising at least one functional group that is reactive with at least one functional group selected from the at least one reactive functional group of the at least one polysiloxane (a) and at least one functional group of the at least one polyol (b), wherein each component is different, and wherein a coating formed from the coating composition when cured has a flexibility rating of at least 6 according to a Flexibility Test Method at a temperature of 70° F.
- 2. A coating composition according to claim 1, wherein each R2, which may be identical or different, represents a group comprising at least one reactive functional group 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.
- 3. A coating composition according to claim 1, wherein the at least one polysiloxane (a) comprises at least two reactive functional groups.
- 4. A coating composition according to claim 1, wherein at least one R2 group represents a group comprising at least one reactive functional group selected from a hydroxyl group and a carbamate group.
- 5. A coating composition according to claim 4, wherein at least one R2 group represents a group comprising at least two reactive functional groups selected from a hydroxyl group and a carbamate group.
- 6. A coating composition according to claim 1, wherein at least one R2 group represents a group comprising an oxyalkylene group and at least two hydroxyl groups.
- 7. A coating composition according to claim 1, wherein the polysiloxane has the following structure (II) or (III):
- 8. A coating composition according to claim 7, wherein (n+m) ranges from 2 to 9.
- 9. A coating composition according to claim 8, wherein (n+m) ranges from 2 to 3.
- 10. A coating composition according to claim 7, wherein (n′+m′) ranges from 2 to 9.
- 11. A coating composition according to claim 10, wherein (n′+m′) ranges from 2 to 3.
- 12. A coating composition according to claim 7, wherein X represents a group which comprises at least one reactive functional group 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.
- 13. A coating composition according to claim 12, wherein X represents a group comprising at least one reactive functional group selected from a hydroxyl group and a carbamate group.
- 14. A coating composition according to claim 12, wherein X represents a group comprising at least two hydroxyl groups.
- 15. A coating composition according to claim 1, wherein the at least one polysiloxane (a), when added to the other components that form the composition, is present in the composition in an amount ranging from 0.01 to 90 weight percent based on total weight of resin solids of the components from which the composition is formed.
- 16. A coating composition according to claim 15, wherein the at least one polysiloxane (a) is present in an amount of at least 2 weight percent.
- 17. A coating composition according to claim 16, wherein the at least one polysiloxane (a) is present in an amount of at least 5 weight percent.
- 18. A coating composition according to claim 17, wherein the at least one polysiloxane (a) is present in an amount of at least 10 weight percent.
- 19. A coating composition according to claim 1, wherein the at least one polyol is selected from polyether polyols, polyester polyols, acrylic polyols, and polyurethane polyols.
- 20. A coating composition according to claim 19, wherein the polyol comprises at least one polyalkylene oxide polyol.
- 21. A coating composition according to claim 19, wherein the polyol further comprises at least one reactive functional group other than a hydroxyl group.
- 22. A coating composition according to claim 21, wherein the at least one reactive functional group of the polyol comprises a carbamate functional group.
- 23. A coating composition according to claim 1, wherein the at least one polyol, when added to the other components that form the composition, is present in the composition in an amount ranging from 0.1 to 30 weight percent based on total weight of resin solids of the components from which the composition is formed.
- 24. A coating composition according to claim 23, wherein the at least one polyol, when added to the other components that form the composition, is present in an amount ranging from 5 to 20 weight percent based on total weight of resin solids of the components from which the composition is formed.
- 25. A coating composition according to claim 1, wherein the at least one reactant is selected from at least one curing agent.
- 26. A coating composition according to claim 25, wherein the at least one curing agent is selected from an aminoplast resin, a polyisocyanate, a blocked polyisocyanate compound, a polyepoxide, a polyacid, and a polyol.
- 27. A coating composition according to claim 266, wherein the at least one curing agent comprises a polyisocyanate.
- 28. A coating composition according to claim 26, wherein the at least one curing agent comprises a mixture of a polyisocyanate and an aminoplast resin.
- 29. A coating composition according to claim 25, wherein the curing agent, when added to the other components that form the composition, is present in an amount ranging from 5 to 40 weight percent based on total weight of resin solids of the components from which the composition is formed.
- 30. A coating composition according to claim 1, wherein the components from which the coating composition is formed comprise at least one film-forming material.
- 31. A coating composition according to claim 30, wherein the at least one film-forming material is selected from at least one additional polymer, in addition to and different from the at least one polysiloxane (a) and the at least one polyol (b), comprising at least one reactive functional group.
- 32. A coating composition according to claim 30, wherein the at least one additional polymer comprises at least one reactive functional group selected from a hydroxyl group, a carbamate group, an epoxy group, an isocyanate group, and a carboxyl group.
- 33. A composition according to claim 1, wherein the components from which the composition is formed comprise at least one material which has at least one reactive functional group which is blocked with a silyl group.
- 34. A composition according to claim 33, wherein the silyl blocking group has the following structure (IX):
- 35. A composition according to claim 33, wherein the at least one reactive functional group is selected from a hydroxyl group, a carbamate group, a carboxyl group, and an amide group.
- 36. A composition according to claim 33, wherein the compounds which can be reacted with the functional group to form the silyl group are selected from hexamethyldisilazane, trimethylchlorosilane, trimethylsilyidiethylamine, t-butyl dimethylsilyl chloride, diphenyl methylsilyl chloride, hexamethyl disilylazide, hexamethyl disiloxane, trimethylsilyl triflate, hexamethyldisilyl acetamide and mixtures of any of the foregoing.
- 37. A composition according to claim 33, wherein the at least one reactant has a backbone which comprises at least one linkage selected from an ester linkage, a urethane linkage, a urea linkage, an amide linkage, a siloxane linkage, and an ether linkage or a polymer such as a polyester, an acrylic polymer, a polyurethane, a polyether, a polyurea, a polyamide, and copolymers of any of the foregoing.
- 38. A composition according to claim 33, wherein the reactant comprises at least one compound having the following structure (X):
- 39. A coating composition according to claim 1, wherein the components from which the coating composition is formed further comprise at least one adjuvant surface active agent selected from an anionic surface active agent, a cationic surface active agent and a nonionic surface active agent.
- 40. A coating composition according to claim 1, wherein the components from which the coating composition is formed further comprise at least one catalyst.
- 41. A coating composition according to claim 40, wherein the at least one catalyst is selected from at least one acid functional catalyst.
- 42. A coating composition according to claim 41, wherein the at least one acid functional catalyst is selected from an acid phosphate, a substituted sulfonic acid and an unsubstituted sulfonic acid.
- 43. A coating composition according to claim 42, wherein the at least one acid functional catalyst is selected from phenyl acid phosphate and dodecylbenzene sulfonic acid.
- 44. A coating composition according to claim 1, wherein the components from which the coating composition is formed further comprise a plurality of particles which are different from components (a), (b) and (c).
- 45. A coating composition according to claim 44, wherein the plurality of particles are selected from inorganic particles, composite particles, and mixtures thereof.
- 46. A coating composition according to claim 44, wherein the particles are selected from fumed silica, amorphous silica, colloidal silica, alumina, colloidal alumina, titanium dioxide, cesium oxide, yttrium oxide, colloidal yttria, zirconia, colloidal zirconia and mixtures of any of the foregoing.
- 47. A coating composition according to claim 46, wherein the particles include colloidal silica.
- 48. A coating composition according to claim 44, wherein the particles are surface treated.
- 49. A coating composition according to claim 44, wherein the particles have an average particle size of less than 100 microns prior to incorporation into the composition.
- 50. A coating composition according to claim 44, wherein the particles have an average particle size ranging from 1 to less than 1000 nanometers prior to incorporation into the composition.
- 51. A coating composition according to claim 50, wherein the particles have an average particle size ranging from 1 to 100 nanometers prior to incorporation into the composition.
- 52. A coating composition according to claim 51, wherein the particles have an average particle size ranging from 5 to 50 nanometers prior to incorporation into the composition.
- 53. A coating composition according to claim 44, wherein the particles, when added to the other components that form the composition, are present in the composition in an amount ranging from 0.01 to 75 weight percent based on total weight of the resin solids of the components from which the composition is formed.
- 54. A coating composition according to claim 53, wherein the particles are present in an amount of at least 0.1 weight percent.
- 55. A coating composition according to claim 54, wherein the particles are present in an amount of at least 0.5 weight percent.
- 56. A coating composition according to claim 55, wherein the particles are present in an amount of at least 5 weight percent.
- 57. A coating composition according to claim 53, wherein the particles are present in an amount of less than 50 weight percent.
- 58. A coating composition according to claim 57, wherein the particles are present in an amount of less than 20 weight percent.
- 59. A coating composition according to claim 57, wherein the particles are present in an amount of less than 10 weight percent.
- 60. A coating composition according to claim 1, wherein the coating formed from the coating composition when cured has a flexibility of at least 8 at a temperature of 70° F.
- 61. A coating composition according to claim 60, wherein the coating formed from the coating composition when cured has a flexibility of at least 9 at a temperature of 70° F.
- 62. A coating composition according to claim 0.1, wherein the coating formed from the coating composition when cured has an initial scratch resistance value such that after scratch testing greater than 40 percent of initial 20° gloss is retained.
- 63. A coating composition according to claim 1, wherein the coating formed from the coating composition when cured has a glass transition temperature ranging from −20° C. to 100° C.
- 64. A coating composition according to claim 63, wherein the coating formed from the coating composition when cured has a glass transition temperature ranging from 40° C. to 90° C.
- 65. A cured coating formed from the coating composition according to claim 1.
- 66. A coated substrate comprising a flexible substrate and a composition according to claim 1 coated over at least a portion of the substrate.
- 67. A coated automobile substrate comprising a substrate and a composition according to claim 1 coated over at least a portion of the substrate.
- 68. A method for coating a substrate comprising applying over at least a portion of the substrate a composition according to claim 1.
- 69. A method for improving the scratch resistance of a polymeric substrate, the method comprising applying to at least a portion of the substrate a coating composition according to claim 1.
- 70. A method for improving the scratch resistance of a polymer coated substrate, the method comprising applying to at least a portion of the substrate a coating composition according to claim 1.
- 71. A method for retaining the gloss of a polymer coated substrate after a predetermined period of time, comprising applying a coating composition according to claim 1 over a polymer coated surface of the substrate.
- 72. A method for revitalizing the gloss of a polymer coated substrate after a predetermined period of time, comprising applying a coating composition according to claim 1 over a polymer coated surface of the substrate.
- 73. A coating composition formed from components comprising:
(a) at least one polysiloxane comprising at least one reactive functional group, the 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 at least one reactive functional group, wherein m and n fulfill the requirements of 0<n<4, 0<m<4 and 2≦(m+n)<4; (b) at least one material comprising at least one reactive functional group; and (c) at least reactant comprising at least one functional group that is reactive with at least one functional group selected from the at least one reactive functional group of the at least one polysiloxane (a) and the at least one reactive functional group of the at least one material (b), wherein each component is different, and wherein a coating formed from the coating composition when cured has a flexibility rating of at least 6 according to a Flexibility Test Method at a temperature of 70° F.
- 74. A coating composition according to claim 73, wherein the at least one material is a flexibilizing agent present in an amount less than 30 weight percent on a basis of total resin solids of the components from which the composition is formed.
- 75. A coating composition according to claim 73, wherein each R2, which may be identical or different, represents a group comprising at least one reactive functional group 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.
- 76. A coating composition according to claim 73, wherein the at least one polysiloxane (a) comprises at least two reactive functional groups.
- 77. A coating composition according to claim 73, wherein at least one R2 group represents a group comprising at least one reactive functional group selected from a hydroxyl group and a carbamate group.
- 78. A coating composition according to claim 77, wherein at least one R2 group represents a group comprising at least two reactive functional groups selected from a hydroxyl group and a carbamate group.
- 79. A coating composition according to claim 73, wherein at least one R2 group represents a group comprising an oxyalkylene group and at least two hydroxyl groups.
- 80. A coating composition according to claim 73, wherein the polysiloxane has the following structure (II) or (III):
- 81. A coating composition according to claim 80, wherein (n+m) ranges from 2 to 9.
- 82. A coating composition according to claim 81, wherein (n+m) ranges from 2 to 3.
- 83. A coating composition according to claim 80, wherein (n′+m′) ranges from 2 to 9.
- 84. A coating composition according to claim 83, wherein (n′+m′) ranges from 2 to 3.
- 85. A coating composition according to claim 80, wherein X represents a group which comprises at least one reactive functional group 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.
- 86. A coating composition according to claim 85, wherein X represents a group comprising at least one reactive functional group selected from a hydroxyl group and a carbamate group.
- 87. A coating composition according to claim 85, wherein X represents a group comprising at least two hydroxyl groups.
- 88. A coating composition according to claim 73, wherein the at least one polysiloxane (a), when added to the other components that form the composition, is present in the composition in an amount ranging from 0.01 to 90 weight percent based on total weight of resin solids of the components from which the composition is formed.
- 89. A coating composition according to claim 88, wherein the at least one polysiloxane (a) is present in an amount of at least 2 weight percent.
- 90. A coating composition according to claim 89, wherein the at least one polysiloxane (a) is present in an amount of at least 5 weight percent.
- 91. A coating composition according to claim 90, wherein the at least one polysiloxane (a) is present in an amount of at least 10 weight percent.
- 92. A coating composition according to claim 73, wherein the at least one material is selected from polyether polyols, polyester polyols, acrylic polyols, and polyurethane polyols.
- 93. A coating composition according to claim 92, wherein the at least one material comprises at least one polyalkylene oxide polyol.
- 94. A coating composition according to claim 92, wherein the at least one material comprises at least one reactive functional group other than a hydroxyl group.
- 95. A coating composition according to claim 73, wherein the at least one reactive functional group of the at least one material comprises a carbamate functional group.
- 96. A coating composition according to claim 73 wherein the at least one material, when added to the other components that form the composition, is present in the composition in an amount ranging from 0.1 to 30 weight percent based on total weight of resin solids of the components from which the composition is formed.
- 97 A coating composition according to claim 96, wherein the at least one material, when added to the other components that form the composition, is present in an amount ranging from 5 to 20 weight percent based on total weight of resin solids of the components from which the composition is formed.
- 98 A coating composition according to claim 73, wherein the at least one reactant is selected from at least one curing agent.
- 99. A coating composition according to claim 98, wherein the at least one curing agent is selected from an aminoplast resin, a polyisocyanate, a blocked polyisocyanate compound, a polyepoxide, a polyacid, and a polyol.
- 100. A coating composition according to claim 99, wherein the at least one curing agent comprises a polyisocyanate.
- 101. A coating composition according to claim 99, wherein the at least one curing agent comprises a mixture of a polyisocyanate and an aminoplast resin.
- 102. A coating composition according to claim 98, wherein the curing agent, when added to the other components that form the composition, is present in an amount ranging from 5 to 40 weight percent based on total weight of resin solids of the components from which the composition is formed.
- 103. A coating composition according to claim 73, wherein the components from which the coating composition is formed comprise at least one film-forming material.
- 104. A coating composition according to claim 103, wherein the at least one film-forming material is selected from at least one additional polymer, in addition to and different from the at least one polysiloxane (a) and the at least one material (b), comprising at least one reactive functional group.
- 105. A coating composition according to claim 104, wherein the at least one additional polymer comprises at least one reactive functional group selected from a hydroxyl group, a carbamate group, an epoxy group, an isocyanate group, and a carboxyl group.
- 106. A composition according to claim 73, wherein the components from which the composition is formed comprise at least one material which has at least one reactive functional group which is blocked with a silyl group.
- 107. A composition according to claim 106, wherein the silyl blocking group has the following structure (IX):
- 108. A composition according to claim 106, wherein the at least one reactive functional group is selected from a hydroxyl group, a carbamate group, a carboxyl group, and an amide group.
- 109. A composition according to claim 106, wherein the compounds which can be reacted with the functional group to form the silyl group are selected from hexamethyldisilazane, trimethylchlorosilane, trimethylsilyidiethylamine, t-butyl dimethylsilyl chloride, diphenyl methylsilyl chloride, hexamethyl disilylazide, hexamethyl disiloxane, trimethylsilyl triflate, hexamethyldisilyl acetamide and mixtures of any of the foregoing.
- 110. A composition according to claim 106, wherein the at least one reactant has a backbone which comprises at least one linkage selected from an ester linkage, a urethane linkage, a urea linkage, an amide linkage, a siloxane linkage, and an ether linkage or a polymer such as a polyester, an acrylic polymer, a polyurethane, a polyether, a polyurea, a polyamide and copolymers of any of the foregoing.
- 111. A composition according to claim 106, wherein the reactant comprises at least one compound having the following structure (X):
- 112. A coating composition according to claim 73, wherein the components from which the coating composition is formed further comprise at least one adjuvant surface active agent selected from an anionic surface active agent, a cationic surface active agent and a nonionic surface active agent.
- 113. A coating composition according to claim 73, wherein the components from which the coating composition is formed further comprise at least one catalyst.
- 114. A coating composition according to claim 113, wherein the at least one catalyst is selected from at least one acid functional catalyst.
- 115. A coating composition according to claim 114, wherein the at least one acid functional catalyst is selected from an acid phosphate, a substituted sulfonic acid and an unsubstituted sulfonic acid.
- 116. A coating composition according to claim 115, wherein the at least one acid functional catalyst is selected from phenyl acid phosphate and dodecylbenzene sulfonic acid.
- 117. A coating composition according to claim 73, wherein the components from which the coating composition is formed further comprise a plurality of particles which are different from components (a), (b) and (c).
- 118. A coating composition according to claim 117, wherein the plurality of particles are selected from inorganic particles, composite particles, and mixtures thereof.
- 119. A coating composition according to claim 118, wherein the particles are selected from fumed silica, amorphous silica, colloidal silica, alumina, colloidal alumina, titanium dioxide, cesium oxide, yttrium oxide, colloidal yttria, zirconia, colloidal zirconia and mixtures of any of the foregoing.
- 120. A coating composition according to claim 119, wherein the particles include colloidal silica.
- 121. A coating composition according to claim 117, wherein the particles are surface treated.
- 122. A coating composition according to claim 117, wherein the particles have an average particle size of less than 100 microns prior to incorporation into the composition.
- 123. A coating composition according to claim 117, wherein the particles have an average particle size ranging from 1 to less than 1000 nanometers prior to incorporation into the composition.
- 124. A coating composition according to claim 123, wherein the particles have an average particle size ranging from 1 to 100 nanometers prior to incorporation into the composition.
- 125. A coating composition according to claim 124, wherein the particles have an average particle size ranging from 5 to 50 nanometers prior to incorporation into the composition.
- 126. A coating composition according to claim 117, wherein the particles, when added to the other components that form the composition, are present in the composition in an amount ranging from 0.01 to 75 weight percent based on total weight of the resin solids of the components from which the composition is formed.
- 127. A coating composition according to claim 126, wherein the particles are present in an amount of at least 0.1 weight percent.
- 128. A coating composition according to claim 127, wherein the particles are present in an amount of at least 0.5 weight percent.
- 129. A coating composition according to claim 128, wherein the particles are present in an amount of at least 5 weight percent.
- 130. A coating composition according to claim 126, wherein the particles are present in an amount of less than 50 weight percent.
- 131. A coating composition according to claim 130, wherein the particles are present in an amount of less than 20 weight percent.
- 132. A coating composition according to claim 130, wherein the particles are present in an amount of less than 10 weight percent.
- 133. A coating composition according to claim 73, wherein the coating formed from the coating composition when cured has a flexibility of at least 8 at a temperature of 70° F.
- 134. A coating composition according to claim 133, wherein the coating formed from the coating composition when cured has a flexibility of at least 9 at a temperature of 70° F.
- 135. A coating composition according to claim 73, wherein the coating formed from the coating composition when cured has an initial scratch resistance value such that after scratch testing greater than 40 percent of initial 200 gloss is retained.
- 136. A coating composition according to claim 73, wherein the coating formed from the coating composition when cured has a glass transition temperature ranging from −50° C. to 100° C.
- 137. A coating composition according to claim 136, wherein the coating formed from the coating composition when cured has a glass transition temperature ranging from 40° C. to 90° C.
- 138. A coating composition according to claim 73, wherein the composition is formed from components comprising at least one film forming material.
- 139. A cured composition according to claim 73, wherein the cured composition is cured by exposure to ionizing radiation.
- 140. A cured composition according to claim 73, wherein the cured composition is cured by exposure to actinic radiation.
- 141. A cured composition according to claim 73, wherein the cured composition is cured by exposure to (1) ionizing radiation or actinic radiation and (2) thermal energy.
- 142. A cured coating formed from the coating composition according to claim 73.
- 143. A coated substrate comprising a flexible substrate and a composition according to claim 73 coated over at least a portion of the substrate.
- 144. A coated automobile substrate comprising a substrate and a composition according to claim 73 coated over at least a portion of the substrate.
- 145. A method for coating a substrate comprising applying over at least a portion of the substrate a composition according to claim 73.
- 146. A method for improving the scratch resistance of a polymeric substrate, the method comprising applying to at least a portion of the substrate a coating composition according to claim 73.
- 147. A method for improving the scratch resistance of a polymer coated substrate, the method comprising applying to at least a portion of the substrate a coating composition according to claim 73.
- 148. A method for retaining the gloss of a polymer coated substrate after a predetermined period of time, comprising applying a coating composition according to claim 73 over a polymer coated surface of the substrate.
- 149. A method for revitalizing the gloss of a polymer coated substrate after a predetermined period of time, comprising applying a coating composition according to claim 73 over a polymer coated surface of the substrate.
- 150. A coating composition formed from components comprising:
(a) at least one polysiloxane comprising at least one reactive functional group, the 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 at least one reactive functional group, wherein m and n fulfill the requirements of 0<n<4, 0<m<4 and 2≦(m+n)<4; (b) at least one reactant comprising at least one functional group that is reactive with at least one reactive functional group of (a), wherein each component is different, wherein a coating formed from the coating composition when cured has a flexibility rating according to a Flexibility Test Method of at least 6 at a temperature of 70° F., and wherein the coating formed from the coating composition when cured has an initial scratch resistance value such that after scratch testing greater than 40 percent of initial 20° gloss is retained.
- 151. A coating composition formed from components comprising:
(a) at least one polysiloxane comprising at least one reactive functional group, the 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 at least one reactive functional group, wherein m and n fulfill the requirements of 0<n<4, 0<m<4 and 2≦(m+n)<4; (b) less than 30 weight percent on a basis of total resin solids of the components which form the coating composition of at least one polyol having a hydroxyl value ranging from 100 to 200; and (c) at least one reactant comprising at least one functional group that is reactive with at least one functional group selected from the at least one reactive functional group of the at least one polysiloxane (a) and at least one functional group of the at least one polyol (b), wherein each component is different, and wherein a coating formed from the coating composition when cured has a glass transition temperature ranging from −20° C. to 100° C.
- 152. A coating composition formed from components comprising:
(a) at least one polysiloxane comprising at least one reactive functional group, the 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 at least one reactive functional group, wherein m and n fulfill the requirements of 0<n<4, 0<m<4 and 2≦(m+n)<4; (b) at least one polyol selected from a polyether polyol and a polyester polyol and having a hydroxyl value ranging from 100 to 200; and (c) at least one aminoplast resin; and (d) at least one polyisocyanate, wherein each component is different, and wherein a coating formed from the coating composition when cured has a flexibility rating of at least such that a coating formed from the coating composition when cured has a flexibility rating of at least 6 according to a Flexibility Test method at a temperature of 70° F.
- 153. A coating composition formed from components comprising:
(a) at least one polysiloxane comprising at least one reactive functional group, the 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 at least one reactive functional group, wherein m and n fulfill the requirements of 0<n<4, 0<m<4 and 2≦(m+n)<4; (b) less than 30 weight percent on a basis of total resin solids of the components which form the coating composition of at least one polyol selected from a polyether polyol and a polyester polyol and having a hydroxyl value ranging from 100 to 200; and (c) at least one aminoplast resin; and (d) at least one polyisocyanate, wherein each component is different, and wherein a coating formed from the coating composition when cured has a glass transition temperature ranging from −20° C. to 100° C.
- 154. A coating composition according to claim 153, further comprising at least one film-forming material in addition to and different from the polysiloxane (a) and polyol (b), the at least one film-forming material comprising at least one functional group which is reactive with at least one component selected from the aminoplast resin (c) and the polyisocyanate (d).
- 155. A coating composition formed from components comprising:
(a) at least one polysiloxane comprising at least one reactive functional group, the 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 at least one reactive functional group, wherein m and n fulfill the requirements of 0<n<4, 0<m<4 and 2≦(m+n)<4; and (b) a carbamate functional material different from (a).
- 156. A coating composition according to claim 155, wherein the carbamate functional material is selected from acrylics, polyesters, polyurethanes, polyethers and mixtures of any of the foregoing.
- 157. A coating composition according to claim 155, wherein the at least one curing agent is selected from polyisocyanates, and aminoplast resins.
- 158. A coating composition according to claim 155, wherein a coating formed from the coating composition when cured has a glass' transition temperature ranging from −20° C. to 100° C.
- 159. A cured composition according to claim 158, wherein the cured composition is thermally cured.
- 160. A cured coating formed from the coating composition according to claim 155.
- 161. A multi-component composite coating formed from a basecoat deposited from a pigmented coating composition and a topcoat formed from a topcoat composition which is applied over the basecoat, the topcoat composition formed from components comprising:
(a) at least one polysiloxane comprising at least one reactive functional group, the 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 at least one reactive functional group, wherein m and n fulfill the requirements of 0<n<4, 0<m<4 and 2≦(m+n)<4; (b) at least one material comprising at least one reactive functional group; and (c) at least one reactant comprising at least one functional group that is reactive with at least one reactive functional group selected from the at least one reactive functional group of the at least one polysiloxane (a) and the at least one reactive functional group of the at least one material (b), wherein each component is different, and wherein a coating formed from the coating composition when cured has a flexibility rating of at least 6 according to a Flexibility Test Method at a temperature of 70° F.
- 162. A multi-component composite coating formed from a basecoat deposited from a pigmented coating composition and a topcoat formed from a topcoating composition which is applied over the basecoat, the topcoating composition formed from components comprising:
(a) at least one polysiloxane comprising at least one reactive functional group, the 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 at least one reactive functional group, wherein m and n fulfill the requirements of 0<n<4, 0<m<4 and 2≦(m+n)<4; (b) less than 30 weight percent on a basis of total resin solids of the components which form the coating composition of at least one polyol having a hydroxyl value ranging from 100 to 200; and (c) at least one reactant comprising at least one functional group that is reactive with at least one reactive functional group selected from the at least one reactive functional group of the at least one polysiloxane (a) and at least one functional group of the at least one polyol (b), wherein each component is different, and wherein the topcoat when cured has a glass transition temperature ranging from −20° C. to 100° C.
- 163. A multi-component composite coating formed from a basecoat deposited from a pigmented coating composition and a topcoat formed from a topcoating composition which is applied over the basecoat, the topcoating composition formed from components comprising:
(a) at least one polysiloxane comprising at least one reactive functional group, the 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 at least one reactive functional group, wherein m and n fulfill the requirements of 0<n<4, 0<m<4 and 2≦(m+n)<4; and (b) a carbamate functional material different from (a).
- 164. A coated substrate according to claim 163, wherein the substrate is formed from a polymeric material.
- 165. A coated substrate comprising a substrate and a composition according to claim 155 coated over at least a portion of the substrate.
- 166. A coated substrate comprising a substrate and a composite coating according to claim 161 coated over at least a portion of the substrate.
- 167. A coated substrate comprising a substrate and a composite coating according to claim 162 coated over at least a portion of the substrate.
- 168. A coated substrate comprising a substrate and a composite coating according to claim 163 coated over at least a portion of the substrate.
- 169. A coated automobile substrate comprising a substrate and a composition according to claim 155 coated over at least a portion of the substrate.
- 170. A coated automobile substrate comprising a substrate and a composite coating according to claim 161 coated over at least a portion of the substrate.
- 171. A coated automobile substrate comprising a substrate and a composite coating according to claim 162 coated over at least a portion of the substrate.
- 173. A coated automobile substrate comprising a substrate and a composite coating according to claim 163 coated over at least a portion of the substrate.
- 174. A method for coating a substrate comprising applying over at least a portion of the substrate a composition according to claim 155.
- 175. A method for coating a substrate comprising applying over at least a portion of the substrate a composite coating according to claim 161.
- 176. A method for coating a substrate comprising applying over at least a portion of the substrate a composite coating according to claim 162.
- 177. A method for coating a substrate comprising applying over at least a portion of the substrate a composite coating according to claim 163.
- 178. A method for improving the scratch resistance of a polymeric substrate, the method comprising applying to at least a portion of the substrate a coating composition according to claim 155.
- 179. A method for improving the scratch resistance of a polymeric substrate, the method comprising applying to at least a portion of the substrate a composite coating according to claim 161.
- 180. A method for improving the scratch resistance of a polymeric substrate, the method comprising applying to at least a portion of the substrate a composite coating according to claim 162.
- 181. A method for improving the scratch resistance of a polymeric substrate, the method comprising applying to at least a portion of the substrate a composite coating according to claim 163.
- 182. A method for improving the scratch resistance of a polymer coated substrate, the method comprising applying to at least a portion of the substrate a coating composition according to claim 155.
- 183. A method for improving the scratch resistance of a polymer coated substrate, the method comprising applying to at least a portion of the substrate a composite coating according to claim 161.
- 184. A method for improving the scratch resistance of a polymer coated substrate, the method comprising applying to at least a portion of the substrate a composite coating according to claim 162.
- 185. A method for improving the scratch resistance of a polymer coated substrate, the method comprising applying to at least a portion of the substrate a composite coating according to claim 163.
- 186. A composition according to claim 1, wherein a coating formed from the composition when cured has a crosslink density ranging from 50% to 80% of full crosslinking.
- 187. A composition according to claim 73, a coating formed from the coating composition when cured has a having a crosslink density ranging from 50% to 80% of full crosslinking.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a Continuation-in-Part application of U.S. patent application Ser. Nos. 09/489,042 and 09/489,043, both filed Jan. 21, 2000, which are Continuation-in-Part applications of U.S. patent application Ser. No. 09/365,069 filed Jul. 30, 1999. U.S. patent application Ser. Nos. 09/489,042 and 09/489,043 claim the benefit of priority from Provisional Patent Application Serial No. 60/171,899 filed Dec. 23, 1999.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60171898 |
Dec 1999 |
US |
|
60171899 |
Dec 1999 |
US |
Divisions (1)
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Number |
Date |
Country |
Parent |
09629420 |
Jul 2000 |
US |
Child |
10456576 |
Jun 2003 |
US |
Continuation in Parts (2)
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Number |
Date |
Country |
Parent |
09489042 |
Jan 2000 |
US |
Child |
09629420 |
Jul 2000 |
US |
Parent |
09489043 |
Jan 2000 |
US |
Child |
09629420 |
Jul 2000 |
US |