VEHICLE WINDOW COMPRISING A SOLAR CELL ARRANGEMENT
20250226787 ยท 2025-07-10
Inventors
Cpc classification
B60J7/047
PERFORMING OPERATIONS; TRANSPORTING
B32B27/30
PERFORMING OPERATIONS; TRANSPORTING
H02S20/30
ELECTRICITY
B32B2250/40
PERFORMING OPERATIONS; TRANSPORTING
B60R16/03
PERFORMING OPERATIONS; TRANSPORTING
International classification
H02S20/30
ELECTRICITY
B60J7/047
PERFORMING OPERATIONS; TRANSPORTING
B60R16/03
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A vehicle window having a sandwich structure having an outer window body facing a vehicle environment and an inner window body facing a vehicle interior and having a solar cell arrangement, which is disposed between the outer window body and the inner window body, whose upper surface faces the outer window body and whose lower surface faces the inner window body and which has several solar cell elements, between which spaces are formed. At least one reflective layer is disposed on the side of the solar cell arrangement facing away from the outer window body and which reflects radiation, which passes through the spaces between the solar cell elements starting from the vehicle environment, at least partly in the direction of the solar cell elements.
Claims
1. A vehicle window comprising: a sandwich structure having an outer window body facing a vehicle environment and an inner window body facing a vehicle interior and having a solar cell arrangement, which is disposed between the outer window body and the inner window body, whose upper surface faces the outer window body and whose lower surface faces the inner window body and which comprises several solar cell elements, between which spaces are formed, wherein at least one reflective layer, which is disposed on the side of the solar cell arrangement facing away from the outer window body and which reflects radiation, which passes through the spaces between the solar cell elements starting from the vehicle environment, at least partly in the direction of the solar cell elements.
2. The vehicle window according to claim 1, wherein the reflective layer is disposed on a capsule film which is adjacent to the solar cell arrangement.
3. The vehicle window according to claim 1, wherein the reflective layer is disposed on a surface of the inner window body facing the solar cell arrangement.
4. The vehicle window according to claim 1, wherein the reflective layer is disposed on a surface of the inner window body facing away from the solar cell arrangement.
5. The vehicle window according to claim 1, wherein the reflective layer comprises a vapor deposit coating.
6. The vehicle window according to claim 1, wherein the reflective layer comprises a film.
7. The vehicle window according to claim 1, wherein the reflective layer comprises a metal.
8. The vehicle window according to claim 1, wherein the solar cell arrangement is disposed between two capsule films and at least one of the capsule films is transparent to UV radiation.
9. The vehicle window according to claim 1, wherein the outer window body is modified in terms of its refractive index in a surface area on its side facing the vehicle environment.
10. The vehicle window according to claim 9, wherein the outer window body is provided with a sol-gel coating on the side facing the vehicle environment.
11. The vehicle window according to claim 1 to 10, wherein at least sections of the sandwich structure on the side facing the vehicle interior are provided with a glass frit.
12. The vehicle window according to claim 11, wherein the glass frit forms the reflective layer.
13. The vehicle window according to claim 11, wherein the reflective layer is disposed between the glass frit and the inner window body.
14. The vehicle window according to claim 7, wherein the metal reflective layer comprises silver and/or a metal oxide.
15. The vehicle window according to claim 14, wherein the metal oxide reflective layer comprises indium tin oxide.
Description
BRIEF DESCRIPTIONS OF THE DRAWINGS
[0022] Exemplary embodiments of a vehicle window according to the invention are illustrated schematically simplified in the drawing and are explained in more detail in the following description.
[0023]
[0024]
[0025]
[0026]
[0027]
DETAILED DESCRIPTION
[0028]
[0029] Each sandwich structure 16 of roof elements 12 and 14 comprises an outer window body 18, which is curved and made of clear glass. In addition, sandwich structure 16 comprises an inner window body 20, which is also curved and can be made of tinted glass. Outer window body 18 is disposed on the side of vehicle roof arrangement 10 facing the vehicle environment and inner window body 20 is disposed on the side of vehicle roof arrangement 10 facing the vehicle interior.
[0030] A solar cell arrangement 22 is accommodated between outer window body 18 and inner window body 20, said solar cell arrangement 22 being limited on both sides by a capsule film 24 or 26, which is made of what is known as a solar PVB material which has a high transmission capacity for UV radiation.
[0031] Capsule films 24 and 26 are lamination films which connect solar cell arrangement 22 to both outer window body 18 and inner window body 20.
[0032] Solar cell arrangement 22 comprises a plurality of solar cell elements 28 which are disposed next to each other in the transverse and longitudinal roof direction and between which spaces 30 are formed. Solar cell elements 28 are connected to each other via electrical flat conductors 32 while also being connected to a vehicle network.
[0033] In the area of spaces 30, sandwich structure 16 is transparent in such a way that it is possible to see through to the vehicle interior below. However, solar cell elements 28 are opaque, meaning they do not allow a view into the vehicle interior.
[0034] In an edge area on the side facing solar cell arrangement 22, outer window body 18 has a glass frit 34, which limits the see-through surface of outer window body 18 in such a way that electrical flat conductors 32 are concealed and not visible from the outside of the pane.
[0035] Outer window body 18 has a reaction-cured sol-gel coating 44 on its outer surface facing the vehicle environment which reduces the reflectivity of outer window body 18 and is formed by a silicon dioxide compound.
[0036] Inner window body 20 is provided with a reflective layer 36 on its side facing away from solar cell arrangement 22, said reflective layer 36 being formed by a silver layer applied by vapor deposition using a CVD process.
[0037] In an edge area extending to a headliner line 38 shown in
[0038] Reflective layer 36 on the lower surface of inner window body 20 reflects in particular radiation Z, which passes from the vehicle environment through outer window body 18, capsule films 24, one of spaces 30, capsule film 26 and inner window body 20 and whose wavelength is in the UV range, in the direction of solar cell elements 28. This can increase the power yield that can be achieved by means of solar cell arrangement 22.
[0039]
[0040] Otherwise, sandwich structure 16 corresponds to the one shown in
[0041]
[0042] Otherwise, sandwich structure 16 corresponds to the one shown in
LIST OF REFERENCE SIGNS
[0043] 10 vehicle roof arrangement [0044] 12 lid element [0045] 14 fixed roof element [0046] 16, 16 16 sandwich structure [0047] 18 outer window body [0048] 20 inner window body [0049] 22 solar cell arrangement [0050] 24 capsule film [0051] 26 capsule film [0052] 28 solar cell element [0053] 30 space [0054] 32 flat conductor [0055] 34 glass frit [0056] 36, 36, 36 reflective layer [0057] 38 headliner line [0058] 40 glass frit [0059] 42 thermal coating [0060] 44 sol-gel coating