HEATABLE COMPOSITE PANE WITH ACOUSTICALLY DAMPING PROPERTIES
A composite pane includes an outer pane, an inner pane, an acoustic intermediate layer arranged between the inner pane and the outer pane, and a heating element, wherein the acoustic intermediate layer includes, in this order, a thicker layer, a functional layer, and a thinner layer, and the heating element is arranged within the thicker layer, wherein the layer thickness of the thicker layer is at least 10% greater than the layer thickness of the thinner layer.
1 . A composite pane, comprising:
an outer pane,
an inner pane,
an acoustic intermediate layer arranged between the inner pane and the outer pane, and
a heating element,
wherein the acoustic intermediate layer comprises, in this order, a thicker layer, a functional layer, and a thinner layer, and the heating element is arranged within the thicker layer,
wherein a layer thickness of the thicker layer is at least 10% greater than a layer thickness of the thinner layer.
2 . The composite pane according to claim 1 , wherein the layer thickness of the acoustic intermediate layer is from 0.2 mm to 2 mm.
3 . The composite pane according to claim 1 , wherein the layer thickness of the thicker layer is from 0.1 mm to 1 mm.
4 . The composite pane according to claim 1 , wherein the layer thickness of the functional layer is from 0.01 mm to 0.5 mm.
5 . The composite pane according to claim 1 , wherein the layer thickness of the thicker layer is at least 15% greater than the layer thickness (e) of the thinner layer.
6 . The composite pane according to claim 1 , wherein the heating element is implemented in the form of an electrically conductive foil.
7 . The composite pane according to claim 1 , wherein the heating element is implemented in the form of wires.
8 . The composite pane according to claim 1 , wherein the thicker layer and/or the thinner layer contains or consists of polyvinyl butyral, ethylene vinyl acetate, polyvinyl acetate, and/or polyurethane.
9 . The composite pane according to claim 1 , wherein the functional layer has a higher proportion of plasticizers than the thicker and the thinner layer.
10 . The composite pane according to claim 1 , wherein the thicker layer and/or the thinner layer are wedge-shaped.
11 . The composite pane according to claim 1 , wherein the heating element extends over at least 80% of the area of the composite pane.
12 . The composite pane according to claim 1 , wherein the heating element is electrically conductively connected to at least two bus bars in two opposite edge regions.
13 . The composite pane according to claim 12 , wherein the two bus bars are connected to a voltage source such that, between the two bus bars, a current path through the heating element is formed for a heating current.
14 . A method for producing a composite pane according to claim 1 , the method comprising;
providing a layer stack with the outer pane, the acoustic intermediate layer, the heating element, and the inner pane,
arranging the heating element within the thicker layer, and
laminating the layer stack to form the composite pane.
15 . A method comprising providing a composite pane according to claim 1 in a vehicle of locomotion for travel on land, in the air, or on water or as a functional and/or decorative individual piece or as a built-in component in furniture, appliance, or a building.
16 . The composite pane according to claim 2 , wherein the layer thickness of the acoustic intermediate layer is from 0.4 mm to 1 mm.
17 . The composite pane according to claim 3 , wherein the layer thickness of the thicker layer is from 0.15 mm to 0.5 mm.
18 . The composite pane according to claim 4 , wherein the layer thickness of the functional layer is from 0.05 mm to 0.2 mm.
19 . The composite pane according to claim 5 , wherein the layer thickness of the thicker layer is at least 25% greater than the layer thickness of the thinner layer.
20 . The method according to claim 15 , wherein the composite pane is a windshield, a rear window, a side window, and/or a roof panel.