LOW HEAT BUILD-UP UV-CURED VACUUM COATING SYSTEM IN DARK COLORS
A weatherable, low heat build-up, UV-cured vacuum coating for PVC or other extruded plastic profiles comprising a dark-colored pigment system that is substantially IR transparent, an IR reflective substrate, and a vacuum coating system for same.
1 . A method of producing a low heat build-up extrudate with a dark-colored vacuum coating, comprising the steps of: coating a portion of a surface of an infrared reflective substrate, formed of a first thermoplastic resin that is reflective of solar infrared radiation, with an ultraviolet-cured vacuum coating using a vacuum coating gate and mask apparatus, where the vacuum coating gate and mask apparatus is supplied by a vacuum pump and supply apparatus, the coating being transmissive of near-infrared solar radiation and being dark-colored; the dark colored coating having an Lh value between 13 and 40; the dark colored coating having a thickness of between 0.6 and 0.8 mils; and curing the vacuum coating in a primary ultraviolet oven wherein the extrudate exhibits a predicted horizontal heat build-up under ASTM D4803 of less than about 58.degree. Fahrenheit.
2 . The method of claim 1 , further comprising the step of further curing the vacuum coating in a secondary ultraviolet oven.
3 . The method of claim 2 , where the primary ultraviolet oven uses gallium lamps.
4 . The method of claim 2 , where the secondary ultraviolet oven uses mercury lamps.
5 . A method of producing a low heat build-up extrudate with a dark-colored vacuum coating, comprising the steps of: coating a portion of a surface of an infrared reflective substrate, formed of a first thermoplastic resin that is reflective of solar infrared radiation, with an ultraviolet-cured vacuum coating using a vacuum coating gate and mask apparatus, where the vacuum coating gate and mask apparatus is supplied by a vacuum pump and supply apparatus that applies the vacuum coating with a 100 percent solids vacuum coating process, the coating being transmissive of near-infrared solar radiation and being dark-colored; the dark colored coating having an Lh value between 13 and 40; the dark colored coating having a thickness of between 0.6 and 0.8 mils and an infrared transmissive pigment level of approximately 9 percent by weight; and curing the vacuum coating in a primary ultraviolet oven and then further curing the vacuum coating in a secondary ultraviolet oven wherein the extrudate exhibits a predicted horizontal heat build-up under ASTM D4803 of less than about 56.degree. Fahrenheit.
6 . The method of claim 5 , where the primary ultraviolet oven uses gallium UV lamps.
7 . The method of claim 5 , where the secondary ultraviolet oven uses mercury lamps.
8 . A heat build-up resistant extrudate with a dark-colored vacuum coating, comprising: an IR reflective substrate portion formed of a thermoplastic resin that is substantially reflective of solar infrared radiation, a dark-colored vacuum coating that is formed of a UV-cured vacuum coating that is significantly transmissive of solar infrared radiation and that covers at least a portion of the reflective substrate, and wherein the extrudate exhibits a predicted horizontal heat build-up under ASTM D4803 of less than about 58.degree. Fahrenheit.
9 . The extrudate with a dark-colored vacuum coating of claim 8 , wherein, the dark-colored UV-cured vacuum coating is less than about 0.8 mils thick, and the thermoplastic resin contains greater than about 8 parts TiO 2 per hundred parts base resin.
10 . The extrudate with a dark-colored capstock of claim 9 , wherein the dark-colored capstock is between 0.6 and 0.8 mils thick and the first thermoplastic resin contains between 8 and 11 parts TiO 2 per hundred base resin.
11 . The extrudate with a dark-colored capstock of claim 8 , further comprising a base portion formed of a second thermoplastic resin, wherein, the IR reflective substrate portion covers at least part of the surface of the base portion, and the dark-colored capstock portion covers at least part of the surface of the IR reflective substrate portion.
12 . The extrudate with a dark-colored vacuum coating of claim 11 , wherein the second thermoplastic resin is a rigid, solid thermoplastic.
13 . The extrudate with a dark-colored vacuum coating of claim 12 , wherein the second thermoplastic resin is a rigid, foamed thermoplastic resin.
14 . The extrudate with a dark-colored vacuum coating of claim 13 , wherein the base portion is formed of a rigid, foamed thermoplastic resin and wood flour composite.
15 . The extrudate with a dark-colored vacuum coating of claim 13 , wherein the base portion is formed of a rigid, foamed thermoplastic resin and mineral filler composite.