US2008300337A1PendingUtilityA1
Environmentally friendly, 100% solids, actinic radiation curable coating compositions and coated surfaces and coated articles thereof
Est. expiryFeb 4, 2024(expired)· nominal 20-yr term from priority
Inventors:Sally Weine Ramsey
B05D 1/04C08F 2/46B05D 7/14B05D 2401/32B05D 2401/30B05D 1/12B05D 1/06B05D 3/067C09D 4/00B05D 1/02
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Claims
Abstract
Disclosed are environmentally friendly, substantially all solids coating compositions which are curable using ultra violet and visible radiation. In addition, methods for coating surfaces, or at least a portion of the surfaces, and curing of the coated surface to obtain partially or fully cured coated surfaces are also disclosed. Furthermore, articles of manufacture incorporating fully cured coated surfaces are disclosed, in particular motor vehicles and motor vehicle parts or accessories.
Claims
exact text as granted — not AI-modified1 . An actinic radiation curable, substantially all solids composition comprising a mixture of oligomers, monomers, photoinitatiors, co-photoinitiators, fillers, and polymerizable pigment dispersions.
2 . The actinic radiation curable, substantially all solids composition of claim 1 wherein the mixture further comprises 0-40% by weight of oligomer or mixture of oligomers.
3 . The actinic radiation curable, substantially all solids composition of claim 1 wherein the mixture further comprises 5-68% by weight of monomer or mixture of monomers.
4 . The actinic radiation curable, substantially all solids composition of claim 1 wherein the mixture further comprises 3-15% by weight of photoinitiator or mixture of photoinitiators and co-initiators.
5 . The actinic radiation curable, substantially all solids composition of claim 1 wherein the mixture comprises 0.5-11% by weight of filler or mixture of fillers.
6 . The actinic radiation curable, substantially all solids composition of claim 1 wherein the mixture comprises 3-15% by weight of polymerizable pigment dispersion or mixture of polymerizable dispersions.
7 . The actinic radiation curable, substantially all solids composition of claim 1 wherein the mixture comprises 0-40% percent by weight of oligomer or mixture of oligomers, and 5-68% by weight of monomer or mixture of monomers.
8 . The actinic radiation curable, substantially all solids composition of claim 1 wherein the mixture comprises 0-40% percent by weight of oligomer or mixture of oligomers, 5-68% by weight monomer or mixture of monomers and 3-15% by weight of photoinitiator or mixture of photoinitiators and co-initiators.
9 . The actinic radiation curable, substantially all solids composition of claim 1 wherein the mixture comprises 0-40% percent by weight of oligomer or mixture of oligomers, 5-68% by weight of monomer or mixture of monomers, 3-15% by weight of photoinitiator or mixture of photoinitiators and co-initiators and 0.5-11% by weight of filler or mixture of fillers.
10 . The actinic radiation curable, substantially all solids composition of claim 1 wherein the mixture comprises 0-40% percent by weight oligomer or mixture of oligomers, 5-68% by weight of monomer or mixture of monomers, 3-15% by weight of photoinitiator or mixture of photoinitiators and co-initiators, 0.5-11% by weight of filler or mixture of fillers, and 3-15% by weight of solid polymerizable pigment dispersion or mixture of solid polymerizable dispersions; whereby the room temperature viscosity of the composition is up to about 500 centipoise.
11 . The actinic radiation curable, substantially all solids composition as in any of claims 1 - 10 , wherein the oligomers are selected from a group consisting of epoxy acrylates, epoxy diacrylate/monomer blends, silicone acrylate, aliphatic urethane triacrylate/monomer blends, fatty acid modified bisphenol A acrylates, bisphenol epoxy acrylates blended with trimethylolpropane triacrylate, aliphatic urethane triacrylates blended with 1,6-hexanediol acrylate, and combinations thereof.
12 . The actinic radiation curable, substantially all solids composition as in any of claims 1 - 10 , wherein the oligomers are selected from a group consisting of epoxy acrylates, epoxy diacrylate/monomer blends, aliphatic urethane triacrylate/monomer blends, and combinations thereof.
13 . The actinic radiation curable, substantially all solids composition as in any of claims 1 - 10 , wherein the oligomers are selected from a group consisting of fatty acid modified bisphenol A acrylates, bisphenol epoxy acrylates blended with trimethylolpropane triacrylate, aliphatic urethane triacrylates blended with 1,6-hexanediol acrylate, and combinations thereof.
14 . The actinic radiation curable, substantially all solids composition as in any of claims 1 - 10 , wherein the oligomer is bisphenol epoxy acrylates blended with trimethylolpropane triacrylate.
15 . The actinic radiation curable, substantially all solids composition as in any of claims 1 - 10 , wherein the monomers are selected from a group consisting of trimethylolpropane triacrylate, 2-phenoxyethyl acrylate, isobomyl acrylate, propoxylated glyceryl triacrylate, methacrylate ester derivatives, and combinations thereof.
16 . The actinic radiation curable, substantially all solids composition as in any of claims 1 - 10 , wherein the monomers are selected from a group consisting of trimethylolpropane triacrylate, 2-phenoxyethyl acrylate, methacrylate ester derivatives, and combinations thereof.
17 . The actinic radiation curable, substantially all solids composition as in any of claims 1 - 10 , wherein the photoinitiators are selected from a group consisting of diphenyl (2,4,6-trimethylbenzoyl) phosphine oxide, a thioxanthone, dimethyl ketal, benzophenone, 1-hydroxycyclohexyl phenyl ketone, 2-hydroxy-2-methyl-1-phenyl-propan-1-one, 2,4,6,-trimethylbenzophenone, 4-methylbenzophenone, oligo (2-hydroxy-2-methyl-1-(4-(1-methylvinyl)phenyl)propanone), amine acrylates, and combinations thereof.
18 . The actinic radiation curable, substantially all solids composition as in any of claims 1 - 10 , wherein the photoinitiators are selected from a group consisting of diphenyl (2,4,6-trimethylbenzoyl) phosphine oxide, benzophenone, 1-hydroxycyclohexyl phenyl ketone, and combinations thereof.
19 . The actinic radiation curable, substantially all solids composition as in any of claims 1 - 10 , wherein at least one photoinitiator is a phosphine oxide.
20 . The actinic radiation curable, substantially all solids composition of any of claims 1 - 10 , wherein the fillers are selected from a group consisting of amorphous silicon dioxide prepared with polyethylene wax, synthetic amorphous silica with organic surface treatment, untreated amorphous silicon dioxide, alkyl quaternary bentonite, colloidal silica, acrylated colloidal silica, alumina, zirconia, zinc oxide, niobia, titania aluminum nitride, silver oxide, cerium oxides, and combinations thereof.
21 . The actinic radiation curable, substantially all solids composition of any of claims 1 - 10 , wherein the fillers are selected from a group consisting of amorphous silicon dioxide prepared with polyethylene wax, synthetic amorphous silica with organic surface treatment, and combinations thereof.
22 . The actinic radiation curable, substantially all solids composition of claim 20 wherein the average size of the filler particles is less than 500 nanometers.
23 . The actinic radiation curable, substantially all solids composition of claim 20 wherein the average size of the filler particles is less than 100 nanometers.
24 . The actinic radiation curable, substantially all solids composition of claim 20 wherein the average size of the filler particles is less than 50 nanometers.
25 . The actinic radiation curable, substantially all solids composition of claim 20 wherein the average size of the filler particles is less than 25 nanometers.
26 . The actinic radiation curable, substantially all solids composition as in any of claims 1 - 10 , wherein the polymerizable pigment dispersions are comprised of pigments attached to activated resins.
27 . The actinic radiation curable, substantially all solids composition of claim 26 , wherein the activated resins are selected from a group consisting of acrylate resins, methacrylate resins, and vinyl resins.
28 . The actinic radiation curable, substantially all solids composition of claim 26 , wherein the pigments are selected from a group consisting of carbon black, rutile titanium dioxide, organic red pigment, phthalo blue pigment, red oxide pigment, isoindoline yellow pigment, phthalo green pigment, quinacridone violet, carbazole violet, masstone black, light lemon yellow oxide, light organic yellow, transparent yellow oxide, diarylide orange, quinacridone red, organic scarlet, light organic red, and deep organic red.
29 . The actinic radiation curable, substantially all solids composition as in any of claims 1 - 10 , wherein the polymerizable pigment dispersions are selected from the group consisting of carbon black attached to modified acrylic resins, rutile titanium dioxide attached to modified acrylic resins, and combinations thereof.
30 . The actinic radiation curable, substantially all solids composition as in any of claims 1 - 10 , further comprising a corrosion inhibitor.
31 . The actinic radiation curable, substantially all solids composition of claim 30 , wherein the corrosion inhibitor is an all solids corrosion inhibitor present in an amount up to about 3% by weight.
32 . The actinic radiation curable, substantially all solids composition of claim 30 , wherein the corrosion inhibitor is M-235.
33 . The actinic radiation curable, substantially all solids composition as in any of claims 1 - 10 , further comprising a flow and slip enhancer.
34 . The actinic radiation curable, substantially all solids composition of claim 33 , wherein the flow and slip enhancer is present in an amount up to about 3% by weight.
35 . The actinic radiation curable, substantially all solids composition of claim 33 , wherein the flow and slip enhancer is selected from the group consisting of acrylated silicone, EBECRYL®350, EBECRYL®1360, and CN990.
36 . The actinic radiation curable, substantially all solids composition as in any of claims 1 - 10 , further comprising a curing booster.
37 . The actinic radiation curable, substantially all solids composition of claim 36 , wherein the curing booster is present in an amount up to about 0.5% by weight.
38 . The actinic radiation curable, substantially all solids composition of claim 36 , wherein the curing booster is thioxanthone.
39 . The actinic radiation curable, substantially all solids composition of any of claims 1 - 9 having a room temperature viscosity up to about 500 centipoise.
40 . The actinic radiation curable, substantially all solids composition of claim 1 wherein the composition has been applied to a surface.
41 . The coated surface of claim 40 .
42 . The coated surface of claim 41 , wherein the surface comprises metal, wood, plastic, stone, glass, or ceramic.
43 . The coated surface of claim 41 wherein the coating has been applied to the surface by means of spraying, brushing, rolling, dipping, blade coating, curtain coating or a combination thereof.
44 . The coated surface of claim 41 wherein the coating has been applied to the surface by means of a high pressure low volume spraying apparatus.
45 . The coated surface of claim 41 wherein the coating has been applied to the surface by means of an electrostatic spraying apparatus.
46 . The coated surface as in any of claims 43 - 45 , wherein the coating is applied in a single application.
47 . The coated surface as in any of claims 43 - 45 , wherein the coating is applied in multiple applications.
48 . The coated surface as in any of claims 43 - 45 , wherein the surface is partially covered by the coating.
49 . The coated surface as in any of claims 43 - 45 , wherein the surface is fully covered by the coating.
50 . The coated surface of claim 41 , wherein exposure of the coated surface to actinic radiation the surface coating becomes partially cured.
51 . The coated surface of claim 41 , wherein exposure of the coated surface to actinic radiation the surface coating becomes fully cured.
52 . The partially cured coated surface of claim 50 .
53 . The completely cured coated surface of claim 51 .
54 . The partially cured coated surface of claim 52 , wherein the partially cured coating is opaque.
55 . The partially cured coated surface of claim 52 , wherein the partially cured coating is glossy.
56 . The completely cured coated surface of claim 53 , wherein the completely cured coating is opaque.
57 . The completely cured coated surface of claim 53 , wherein the completely cured coating is hard.
58 . The completely cured coated surface of claim 53 , wherein the completely cured coating is glossy.
59 . The completely cured coated surface of claim 53 , wherein the completely cured coating is corrosion resistant.
60 . The completely cured coated surface of claim 53 , wherein the completely cured coating is abrasion resistant.
61 . The actinic radiation curable, substantially all solids composition as in any of claims 1 - 10 , wherein the composition is curable with actinic radiation selected from the group consisting of visible radiation, near visible radiation, ultra-violet (UV) radiation, and combinations thereof.
62 . The actinic radiation curable, substantially all solids composition of claim 61 , wherein the UV radiation is selected from the group consisting of UV-A radiation, UV-B radiation, UV-B radiation, UV-C radiation, UV-D radiation, or combinations thereof.
63 . The completely cured coated surface of claim 53 , wherein the surface is part of an article of manufacture.
64 . An article of manufacture comprising the completely cured coated surface of claim 53 .
65 . The article of manufacture of claim 64 wherein the article of manufacture is selected from the group consisting of a motor vehicle, a motor vehicle part, a motor vehicle accessory, gardening equipment, a lawnmower, and a lawnmower part.
66 . The article of manufacture of claim 65 wherein the article of manufacture is a motor vehicle part.
67 . The article of manufacture of claim 66 wherein the motor vehicle part is an underhood part.
68 . The article of manufacture of claim 67 wherein the underhood part is selected from the group consisting of an oil filter, a damper, a battery casing, an alternator casing, and an engine manifold.
69 . The article of manufacture of claim 66 wherein the completely cured coated surface exhibits no marking after contact with at least 10 % sulfuric acid at a temperature of at least 65° C. for at least 6 minutes.
70 . The article of manufacture of claim 66 wherein the completely cured coated surface exhibits no marking after contact with at least 10 % sulfuric acid at a temperature of at least 65° C. for at least 12 minutes.
71 . The article of manufacture of claim 66 wherein the completely cured coated surface exhibits no softening and no blistering after immersion in engine coolant for at least 8 hours at a temperature of at least 60° C.
72 . The article of manufacture of claim 66 wherein the completely cured coated surface exhibits no softening and no blistering after immersion in engine coolant for at least 20 hours at a temperature of at least 60° C.
73 . The article of manufacture of claim 66 wherein the completely cured coated surface exhibits no softening and no blistering after immersion in power steering oil for at least 8 hours at a temperature of at least 60° C.
74 . The article of manufacture of claim 66 wherein the completely cured coated surface exhibits no softening and no blistering after immersion in power steering oil for at least 24 hours at a temperature of at least 60° C.
75 . The article of manufacture of claim 66 wherein the completely cured coated surface exhibits no surface corrosion after 400 hours of exposure to salt spray.
76 . The article of manufacture of claim 66 wherein the completely cured coated surface exhibits no surface corrosion after 900 hours of exposure to salt spray.
77 . The article of manufacture of claim 66 wherein the completely cured coated surface exhibits no loss of adhesion after heating at a temperature of at least 200° C. in a convection oven for at least 1 hour.
78 . The article of manufacture of claim 66 wherein the completely cured coated surface exhibits no loss of adhesion after heating at a temperature of at least 200° C. in a convection oven for at least 10 hours.
79 . The article of manufacture of claim 65 wherein the article of manufacture is a motor vehicle selected from the group consisting of an automobile, a bus, a truck, a tractor, and an off-road vehicle.
80 . The article of manufacture of claim 65 wherein the article of manufacture is a motor vehicle accessory and the motor vehicle is selected from the group consisting of an automobile, a bus, a truck, a tractor, a recreational vehicle, and an off-road vehicle.
81 . The article of manufacture of claim 65 wherein the article of manufacture is a motor vehicle part and the motor vehicle is selected from the group consisting of an automobile, a bus, a truck, and an off-road vehicle.
82 . The automobile of claim 79 .
83 . The lawnmower of claim 65 .
84 . A method for producing the actinic radiation curable, substantially all solids composition of claim 1 comprising adding components to a container, wherein the components include at least one oligomer, at least one monomer, at least one photoinitator, at least one co-photoinitiator, at least one filler, and at least one polymerizable pigment dispersion and using a means for mixing the components to form a smooth composition.
85 . The composition of claim 1 further comprising a suitable container.
86 . The composition of claim 1 wherein the suitable container is a can.Join the waitlist — get patent alerts
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