Window member and manufacturing method thereof
US-2024336031-A1 · Oct 10, 2024 · US
US2017197382A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2017197382-A1 |
| Application number | US-201515316377-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jun 9, 2015 |
| Priority date | Jun 12, 2014 |
| Publication date | Jul 13, 2017 |
| Grant date | — |
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The present invention is a laminate where a carbon nanotube-containing layer composed at least of carbon nanotube and resin is laminated above a substrate. The laminate is a laminate where a clear layer is further laminated above a laminated surface of the carbon nanotube-containing layer. The laminate has L* being equal to or less than 2.5, a* being in a range of −2 to 2, and b* being in a range of −2 to 0.3, each measured from the laminated surface. The carbon nanotube-containing layer above the substrate is formed by coating. The clear layer is transparent resin or glass. Note that L*, a* and b* indicate values in L*a*b* color system specified in JIS Z8729.
Opening claim text (preview).
1 . A resin composition comprising at least carbon nanotube and resin, wherein, when a film thickness of a carbon nanotube-containing layer laminated above a substrate and containing the resin composition is 10 μn, the laminate has L* being equal to or less than 2.5, a* being in a range of −2 to 2, and b* being in a range of −1.5 to 0, each measured from a direction of a laminated surface (where L*, a* and b* indicate values in L*a*b* color system specified in JIS Z8729). 2 . A laminate where a carbon nanotube-containing layer comprising at least carbon nanotube and resin is laminated above a substrate, wherein when a film thickness of the carbon nanotube-containing layer is 10 μn, the laminate has L* being equal to or less than 2.5, a* being in a range of −2 to 2, and b* being in a range of −1.5 to 0, each measured from a direction of a laminated surface. 3 . A laminate where a carbon nanotube-containing layer comprising at least carbon nanotube and resin is laminated above a substrate, and a clear layer is further laminated above a surface laminated with the carbon nanotube-containing layer, wherein the laminate has L* being equal to or less than 2.5, a* being in a range of −2 to 2, and b* being in a range of −2 to 0.3, each measured from a direction of the laminated surface, the carbon nanotube-containing layer above the substrate is formed by coating, and the clear layer is transparent resin or glass (where L*, a* and b* indicate values in L*a*b* color system specified in JIS Z8729). 4 . The laminate according to claim 3 , wherein a fiber diameter of carbon nanotube is 8 to 25 nm. 5 . The laminate according to claim 3 , wherein an amount of carbon nanotube in the carbon nanotube-containing layer is 3 to 30 mass %. 6 . The laminate according to claim 3 , wherein a film thickness of the carbon nanotube-containing layer is 10 to 50 μm. 7 . The laminate according to claim 3 , wherein a film thickness of the clear layer is 5 to 40 μm. 8 . The laminate according to claim 3 , wherein an average reflectance of the laminate at a wavelength of 380 to 780 nm measured from the laminated surface is equal to or less than 5%. 9 . The laminate according to claim 3 , wherein an average transmittance of the substrate at a wavelength of 380 to 780 nm is equal to or less than 5%. 10 . A production method of a laminate where a carbon nanotube-containing layer comprising at least a carbon nanotube and resin is laminated above a substrate, and a clear layer is further laminated above a surface laminated with the carbon nanotube-containing layer, wherein the laminate has L* being equal to or less than 2.5, a* being in a range of −2 to 2, and b* being in a range of −2 to 0.3, each measured from a direction of the laminated surface, the carbon nanotube-containing layer above the substrate is formed by coating, and the clear layer is transparent resin or glass (where L*, a* and b* indicate values in L*a*b* color system specified in JIS Z8729).
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