Laminated glass, head up display system, and method for manufacturing head up display system
US-2021046737-A1 · Feb 18, 2021 · US
US11801667B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11801667-B2 |
| Application number | US-202017439192-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 19, 2020 |
| Priority date | Mar 20, 2019 |
| Publication date | Oct 31, 2023 |
| Grant date | Oct 31, 2023 |
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A thermoplastic film 10 is a thermoplastic film comprising a light-emitting layer 11 , wherein the light-emitting layer 11 comprises a thermoplastic resin and a light-emitting material that emits light by being irradiated with excitation light, and when laminated glass obtained by bonding two sheets of clear glass in accordance with JIS R 3211(1998) having a thickness of 2.5 mm with the thermoplastic film interposed therebetween is irradiated, from one surface, with excitation light, which the light-emitting material is capable of absorbing, in a quantity of light of 7 mW/cm 2 , a difference between luminance A observed on a side of the one surface and luminance B observed on a side of the other surface, (A−B), is 5 cd/m 2 or more. According to the present invention, a thermoplastic film such that when laminated glass is made using the thermoplastic film, information is displayed relatively strongly on one surface, and the information is displayed relatively weakly on the other surface, and a laminated glass comprising this thermoplastic film can be provided.
Opening claim text (preview).
The invention claimed is: 1. A thermoplastic film comprising a light-emitting layer, the light-emitting layer comprising: a thermoplastic resin; and a light-emitting material that emits light by being irradiated with excitation light, and when a laminated glass obtained by bonding two sheets of clear glass in accordance with JIS R 3211(1998) having a thickness of 2.5 mm with the thermoplastic film interposed therebetween is irradiated, from one surface, with excitation light, which the light-emitting material is capable of absorbing, in a quantity of light of 7 mW/cm 2 , a difference between luminance A observed on a side of the one surface and luminance B observed on a side of the other surface, (A−B), is 5 cd/m 2 or more. 2. The thermoplastic film according to claim 1 , comprising a visible light absorber. 3. The thermoplastic film according to claim 2 , further comprising an absorber-containing layer being a layer different from the light-emitting layer and comprising the visible light absorber. 4. The thermoplastic film according to claim 3 , further comprising a barrier layer between the light-emitting layer and the absorber-containing layer. 5. The thermoplastic film according to claim 1 , further comprising an ultraviolet ray absorber. 6. The thermoplastic film according to claim 5 , wherein the ultraviolet ray absorber is contained in the absorber-containing layer. 7. The thermoplastic film according to claim 1 , wherein a visible light transmittance Tv as measured for the laminated glass obtained by bonding two sheets of clear glass in accordance with JIS R 3211(1998) having a thickness of 2.5 mm with the thermoplastic film interposed therebetween is 70% or more. 8. The thermoplastic film according to claim 1 , being an interlayer film for laminated glass. 9. A laminated glass comprising: an interlayer film for laminated glass, comprising the thermoplastic film according to claim 8 ; and two glass plates, wherein the interlayer film for laminated glass is disposed between the two glass plates. 10. An image display system comprising: the laminated glass according to claim 9 ; and a light source. 11. A laminated glass comprising: a first glass plate; a second glass plate; and a thermoplastic film disposed between the first glass plate and the second glass plate, wherein the laminated glass comprises a light-emitting material that emits light by irradiation with excitation light, and when the laminated glass is irradiated, from one surface, with excitation light, which the light-emitting material is capable of absorbing, a difference between luminance A observed on a side of the one surface and luminance B observed on a side of the other surface, (A−B), is 5 cd/m 2 or more. 12. The laminated glass according to claim 11 , wherein a coat comprising a visible light absorber is formed on at least one surface of the second glass plate.
Luminescent agents · CPC title
of synthetic resin · CPC title
comprising two outer glass sheets · CPC title
comprising a light source or a light guide · CPC title
Infrared radiation absorbing or reflecting agents · CPC title
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