VEHICLE COMPOSITE PANE COMPRISING A HEATABLE INLAY ELEMENT
A vehicle composite pane includes a first pane and a second pane, which are joined to one another via at least one thermoplastic intermediate layer, and an inlay element, which is arranged between the first pane and the second pane. The inlay element includes an opaque layer that has at least one cutout, a transparent substrate layer, and a transparent electrically heatable layer.
1 . Vehicle composite pane, comprising:
a first pane and a second pane, which are joined to one another via at least one thermoplastic intermediate layer, and
an inlay element, at least comprising an opaque layer that has at least one cutout, a transparent substrate layer, and a transparent electrically heatable layer, wherein the inlay element is arranged between the first pane and the second pane.
2 . The vehicle composite pane according to claim 1 , wherein in the inlay element, the transparent substrate layer is arranged between the opaque layer and the transparent electrically heatable layer.
3 . The vehicle composite pane according to claim 1 , wherein in the inlay element, the transparent electrically heatable layer is arranged between the transparent substrate layer and the opaque layer.
4 . The vehicle composite pane according to claim 1 , wherein in the inlay element, the transparent substrate layer is arranged completely within the at least one cutout of the opaque layer, and the transparent electrically heatable layer is arranged, over an entire surface, directly adjacent the opaque layer) and the transparent substrate layer.
5 . The vehicle composite pane according to claim 1 , wherein in the inlay element, the transparent substrate layer, and the transparent electrically heatable layer are implemented in one piece as an electrically heatable transparent substrate layer.
6 . The vehicle composite pane according to claim 1 , wherein in the inlay element, the opaque layer, and the transparent electrically heatable layer are implemented in one piece as an electrically heatable opaque layer that has at least one cutout; and the transparent substrate layer is arranged, over an entire surface, directly adjacent the electrically heatable opaque layer and the at least one cutout or is arranged completely within the at least one cutout of the electrically heatable opaque layer.
7 . The vehicle composite pane according to claim 1 , wherein the at least one cutout is a sensor window for an optical sensor.
8 . The vehicle composite pane according to claim 1 , wherein the opaque layer contains or is made of poly ethylene terephthalate or polyethylene, preferably PET.
9 . The vehicle composite pane according to claim 1 , wherein the transparent substrate layer includes a thermoplastic or a thermosetting plastic or is a glass layer that has a thickness less than or equal to 0.5 mm.
10 . The vehicle composite pane according to claim 1 , wherein the transparent electrically heatable layer is an electrically heatable coating, a carbon-containing layer, or a metallic layer, or contains or is made of an electrically conductive polymer.
11 . The vehicle composite pane according to claim 5 , wherein the electrically heatable transparent substrate layer or the electrically heatable opaque layer contains or is made of an electrically conductive polymer.
12 . The vehicle composite pane according to claim 1 , wherein the opaque layer or the electrically heatable opaque layer is, at least in sections, transparent to infrared radiation with a wavelength in the range between 800 nm and 1100 nm.
13 . The vehicle composite pane according to claim 1 , wherein the vehicle composite pane is a windshield that is mirror-symmetrical along a center line, and the inlay element is arranged on the center line in the vicinity of the upper edge of the windshield.
14 . Method for producing a vehicle composite pane according to claim 1 , the method comprising:
(a) providing a first pane, a second pane, at least one thermoplastic intermediate layer, and an inlay element, at least comprising an opaque layer that has at least one cutout, a transparent substrate layer, and a transparent electrically heatable layer;
(b) arranging the at least one thermoplastic intermediate layer and the inlay element between the first pane and the second pane; and
(c) joining the first pane to the second pane via the at least one thermoplastic intermediate layer by lamination.
15 . A method comprising forming a windshield of a vehicle with a vehicle composite pane according to claim 1 .
16 . The vehicle composite pane according to claim 8 , wherein the opaque layer contains or is made of polyethylene terephthalate (PET).