Thermoplastic composition for LiDAR sensor system with improved absorption properties
A sensor system comprises a LiDAR unit having an emitter for laser light having a wavelength of 900 nm to 1600 nm and a receiver for light over a wavelength range which is between 800 nm and 1600 nm and at least partly below the operating wavelength of the LiDAR sensor and a cover having a substrate layer made of thermoplastic material which is arranged such that IR light emitted by the LiDAR unit and received by the LiDAR unit passes through the cover.
1 . A sensor system comprising
a LiDAR unit having an emitter for laser IR light having an operating wavelength of 900 nm to 1600 nm and a receiver for laser light over a wavelength range which is between 800 nm and 1600 nm and is at least partially below the operating wavelength of the LiDAR sensor and
a cover having a substrate layer comprising a region made of a thermoplastic composition
based on aromatic polycarbonate and/or polymethyl methacrylate which is arranged such that the IR light emitted by the LiDAR emitter and received by the LiDAR receiver passes through the region made of the thermoplastic composition,
wherein the thermoplastic composition has a light transmission Ty (D65, 10°) determined according to DIN EN ISO 13468-2:2006 at a layer thickness of 4 mm of <0.5%,
wherein the thermoplastic composition contains
a) at least two colorants having an absorption maximum in the range from 400 nm to 650 nm selected from the group consisting of anthraquinone and perinone dyes in a total concentration of 0.07% by weight to 0.5% by weight, and
b) at least one colorant having an absorption maximum in the range from >650 nm to 800 nm selected from the group consisting of the colorants of formulae (1) to (5) with
in a concentration of 0.008% to 0.02% by weight,
wherein
R1 and R2 independently of one another represent a linear or branched alkyl radical or halogen,
n is a natural number between 0 and 4,
in a concentration of 0.002% to 0.008% by weight,
where
and
n is from 1 to 3,
in a concentration of 0.002% to 0.008% by weight, wherein the total concentration of colorants of formulae (2) and (3) is up to 0.008% by weight,
in a concentration of 0.04% to 0.3% by weight where R=n-butyl, iso-butyl,
in a concentration of 0.04% to 0.3% by weight,
in a total concentration of 0.005% to 0.3% by weight
wherein the composition contains <0.05% by weight of phthalocyanines,
wherein the cover comprises no further layers other than the substrate layer, one or more primer layers optionally present and one or more topcoat layers optionally present,
wherein the primer layer is based on polymethylmethacrylate and optionally contains a UV absorber and the topcoat layer is based on polysiloxane comprising a combination of an organo-modified silane with a silica sol, and
wherein the topcoat layer contains silicon dioxide particles having a D90 determined by scanning transmission electron microscopy of less than 0.50 μm and no further particles having a D90 determined by scanning transmission electron microscopy ≥0.50 μm.
2 . The sensor system according to according to claim 1 , wherein the thermoplastic composition of the substrate layer contains further thermoplastic polymers, colorants distinct from colorants of groups a and b, heat stabilizers, demoulding agents, UV absorbers, carbon black, flame retardants, antistats and/or flow improvers.
3 . The sensor system according to claim 1 , wherein the composition contains no further thermoplastic polymers.
4 . The sensor system according to claim 1 , wherein the composition of the substrate layer is free from phthalocyanines.
5 . The sensor system according to claim 1 , wherein the LiDAR unit has an emitter for laser light having an operating wavelength of 900 nm to 950 nm.
6 . The sensor system according to claim 1 , wherein the operating wavelength of the laser lights emitter of the LiDAR unit is 905 nm±5 nm.
7 . A sensor system comprising:
a LiDAR unit having an emitter for laser IR light having an operating wavelength of 900 nm to 1600 nm and a receiver for laser light over a wavelength range which is between 800 nm and 1600 nm and is at least partially below the operating wavelength of the LiDAR sensor and
a cover having a substrate layer comprising a region made of a thermoplastic composition based on aromatic polycarbonate and/or polymethyl methacrylate which is arranged such that the IR light emitted by the LiDAR emitter and received by the LiDAR receiver passes through the region made of the thermoplastic composition,
wherein the thermoplastic composition has a light transmission Ty (D65, 10°) determined according to DIN EN ISO 13468-2:2006 at a layer thickness of 4 mm of <0.5%,
wherein
the thermoplastic composition contains
a) at least two colorants having an absorption maximum in the range from 400 nm to 650 nm selected from the group consisting of anthraquinone and perinone dyes in a total concentration of 0.07% by weight to 0.5% by weight, and
b) at least one colorant having an absorption maximum in the range from >650 nm to 800 nm selected from the group consisting of the colorants of formulae (1) to (5) with
in a concentration of 0.008% to 0.02% by weight,
wherein
R1 and R2 independently of one another represent a linear or branched alkyl radical or halogen,
n is a natural number between 0 and 4,
in a concentration of 0.002% to 0.008% by weight,
where
and
n is from 1 to 3,
in a concentration of 0.002% to 0.008% by weight, wherein the total concentration of colorants of formulae (2) and (3) is up to 0.008% by weight,
in a concentration of 0.04% to 0.3% by weight where R=n-butyl, iso-butyl,
in a concentration of 0.04% to 0.3% by weight,
in a total concentration of 0.005% to 0.3% by weight
wherein the composition contains <0.05% by weight of phthalocyanines, and,
wherein the cover attenuates the LiDAR signal only to the extent that the signal intensity of IR light emitted by the LiDAR unit and received thereby determined by reflection from a smooth surface painted with TiO 2 -containing white paint at a distance of 3.2 m is ≥65% of a reference intensity determined without the cover.
8 . The sensor system according to claim 1 , wherein the cover is a front panel, a rear panel, a bumper, a radiator grille, a vehicle roof, a vehicle roof module, a vehicle side part or an element of the aforementioned.
9 . The sensor system according to claim 1 , wherein the colorants of group a are selected so as to give a black colour impression.
10 . The sensor system according to claim 1 , wherein only one colorant of formula (2) is present as colorant of group b.
11 . The sensor system according to claim 1 , wherein only one colorant of formula (4) is present as colorant of group b.
12 . The sensor system according to claim 1 , wherein the thickness of the substrate layer is 1.0 to 7.0 mm.
13 . The sensor system according to claim 1 , wherein the CIELab color coordinates of the composition of the substrate layer determined at a thickness of 2 mm according to ISO 13468-2:2006 (D65, 10°) and measured in transmission are as follows: L* less than 40, a* less than 10 and more than −10 and b* less than 10 and more than −10.