RADAR-ENABLED COATING CONTAINING METAL EFFECT PIGMENTS ON A SUBSTRATE
The present invention relates to a radar-compatible coating comprising metal-effect pigments on a substrate, to a process for the production of such a coating, and to the use of a substrate coated in this manner, in particular in vehicle construction.
1 . Radar-compatible coating comprising metal-effect pigments on a substrate, characterised in that the coating has at least one layer package consisting of:
a layer (A) which comprises at least one pigment having absorbent properties and is free from metal-effect pigments, and
a layer (B) which comprises flake-form effect pigments, where the flake-form effect pigments are exclusively metal-effect pigments, and where layer (B) has a layer thickness in the range from 2 to ≤10 μm.
2 . Coating according to claim 1 , characterised in that the first layer comprises organic absorption pigments, inorganic absorption pigments and/or flake-form effect pigments having absorbent properties.
3 . Coating according to claim 1 , characterised in that the layer package comprising layers (A) and (B) has a total layer thickness in the range from 10 to 40 μm.
4 . Coating according to claim 1 , characterised in that layer (A) comprises, as flake-form effect pigment, an interference pigment which has a silver-grey absorption color.
5 . Coating according to claim 1 , characterised in that layer (A) comprises, as flake-form effect pigment, an interference pigment which has a red absorption color.
6 . Coating according to claim 1 , characterised in that the metal-effect pigment of layer (B) is an aluminium pigment.
7 . Coating according to claim 1 , characterised in that layer (B) comprises the metal-effect pigments in a concentration in the range from 3 to 25% by weight, based on the weight of layer (B).
8 . Coating according to claim 1 , characterised in that layer (A) comprises the pigment(s) having absorbent properties in a concentration in the range from 10 to 25% by weight, based on the weight of layer (A).
9 . Coating according to claim 1 , characterised in that the substrate is a plastic plate or film, where the plate or film may optionally have a three-dimensional outer shape.
10 . Coating according to claim 1 , characterised in that further layers are optionally located between the substrate and the layer package comprising layers (A) and (B) and/or above this layer package.
11 . Coating according to claim 10 , characterised in that the further layer or layers is (are) a primer layer and/or an outermost clear coat.
12 . Coating according to claim 1 , characterised in that said coating is a vehicle finish.
13 . Process for the production of a radar-compatible coating comprising metal-effect pigments on a substrate, characterised in that
a layer (A) which comprises at least one pigment having absorbent properties and is free from metal-effect pigments is applied to an optionally pre-coated substrate comprising a plastic plate or plastic film, and subsequently
a layer (B) which comprises flake-form effect pigments, where the flake-form effect pigments are exclusively metal-effect pigments, and where layer (B) has a dry layer thickness in the range from 2 to ≤10 μm, is applied to layer (A),
or
a layer (B) which comprises flake-form effect pigments, where the flake-form effect pigments are exclusively metal-effect pigments, and where layer (B) has a dry layer thickness in the range from 2 to ≤10 μm, is applied to an optionally pre-coated substrate comprising a plastic plate or plastic film, and subsequently
a layer (A) which comprises at least one pigment having absorbent properties and is free from metal-effect pigments is applied to layer (B).
14 . Process according to claim 13 , characterised in that layers (A) and (B) are applied by means of a spray process, brushing process, roller coating process, coil coating process, curtain coating process or in-mould process.
15 . Process according to claim 13 , characterised in that the substrate has been pre-coated with a primer layer.
16 . Process according to claim 13 , characterised in that a clear coat is applied to layer (B) of layer package (A)(B) or layer (A) of layer package (B)(A) as outermost layer of the coating.
17 . A method of covering a radar device with a cover having a metallic finish comprising covering the radar device with a substrate according to claim 1 wherein said cover does not adversely affect the functionality of the radar device.
18 . Vehicle part containing a substrate comprising a plastic plate or plastic film which has at least one coating according to claim 1 .