IP Library › Granted Patent US 11,512,181
Granted Patent B2
US 11,512,181 · App. 16/607,247 · Granted Nov 29, 2022

Laser beam-permeable substrate material for use on sensors

Inventors: Ulrich Grosser (Kürten, DE); Alexander Meyer (Düsseldorf, DE); Andreas Klein (Leverkusen, DE)
Assignee: COVESTRO DEUTSCHLAND AG
C08K5/3437C08K5/18C08K5/3445C08K5/3465C08K5/375C08L69/00C09B1/16C09B57/00G01S7/4813G01S17/931
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Quick Facts
Patent No.
US 11,512,181
App. No.
16/607,247
Granted
Nov 29, 2022
Kind
B2
Abstract

The invention relates to a vehicle utilizing a LiDAR sensor system for driver assistance systems. A composition consisting of a thermoplastic material based on polycarbonate, polyester carbonate and/or polymethylmethacrylate is used here for forming a cover for the sensor against the surroundings.

Claims (75)

1. A vehicle comprising

a) a LiDAR sensor which emits laser pulses having a wavelength in the range from 800 to 2500 nm and

b) a cover partially or completely surrounding the LiDAR sensor having a substrate layer comprising a region made of a thermoplastic composition based on aromatic polycarbonate, polyester carbonate and/or polymethyl methacrylate,

wherein the composition has a light transmission in the range from 380 to 780 nm of less than 25.0% determined at a layer thickness of 4 mm according to DIN ISO 13468-2: 2006 (D65, 10°) and

the region of the substrate layer made of the thermoplastic composition in its respective thickness has a permeability to IR radiation in the range from 800 nm to 2500 nm of at least 40% determined according to DIN ISO 13468-2:2006.

2. The vehicle according to claim 1 , wherein the thermoplastic composition of the substrate layer contains less than 0.0005% by weight of carbon black.

3. The vehicle according to claim 1 , wherein the composition contains no carbon black.

4. The vehicle according to claim 1 , wherein the composition contains no further thermoplastic polymers.

5. The vehicle according to claim 1 , wherein the composition contains 0% to less than 5.0% by weight of further thermoplastic polymers.

6. The vehicle according to claim 1 , wherein the thickness of the region of the substrate layer made of the thermoplastic composition is 2 mm to 4 mm.

7. The vehicle according to claim 1 , wherein in addition to the substrate layer and a scratch resistant coating optionally present on one or more sides the cover comprises no further layers.

8. The vehicle according to claim 1 , wherein the cover is a front panel, a rear panel, a bumper, a radiator grill, a vehicle roof, a vehicle roof module or a vehicle side element.

9. The vehicle according to claim 1 , wherein the thermoplastic composition of the substrate layer contains

i) at least 70% by weight of thermoplastic polymer from the group consisting of aromatic polycarbonate, polyester carbonate and/or polymethyl methacrylate,

ii) at least one green and/or one blue colorant selected from the group consisting of the colorants of formulae (1), (2a-c), (3), (4a), (4b), (5) and/or (6)

wherein

Rc and Rd independently of one another represent a linear or branched alkyl radical or halogen,

n independently of the respective R represents an integer between 0 and 3, wherein the radical for n=0 is hydrogen,

iii) at least one red and/or violet colorant selected from the group consisting of the colorants of formulae (7), (8), (9), (10), (11), (12a), (12b) and/or (13)

wherein R is selected from the group consisting of H and p-methylphenylamine radical,

wherein

Ra and Rb independently of one another represent a linear or branched alkyl radical or halogen,

n independently of the respective R represents an integer between 0 and 3, Wherein the radical for n=0 is hydrogen,

iv) optionally one or more further colorants selected from the group consisting of the yellow and orange colorants of formulae (14), (15), (16), (17) and/or (18)

wherein the sum of the colorants ii) to iv) is >0.05% by weight and

wherein the composition contains

0% to less than 30.0% by weight of further thermoplastic polymers and

0% to less than 0.02% by weight of carbon black,

wherein the composition contains in addition to the colorants of groups ii) to iv) less than 0.1% by weight of further colorants and

less than 0.1% by weight of titanium dioxide

and wherein the thickness of the region of the substrate layer made of the thermoplastic composition is 1.0 to 7.0 mm.

10. The vehicle according to claim 9 , wherein the sum of the colorants ii) to iv) in the thermoplastic composition of the substrate layer is at least 0.10% by weight.

11. The vehicle according to claim 9 , wherein the composition contains less than 0.1% by weight of white pigment.

12. The vehicle according to claim 9 , wherein, in addition to the components i), ii), iii) and optionally iv), carbon black, further thermoplastic polymer and/or colorants distinct from the colorants of groups ii) to iv), the composition of the substrate layer contains no further components with the exception of

v) optionally heat stabilizers, mold release agents, UV absorbers, flame retardants, antistats and/or flow enhancers.

13. A vehicle comprising

a) a LiDAR sensor which emits laser pulses having a wavelength in the range from 800 to 2500 nm and

b) a cover partially or completely surrounding the LiDAR sensor having a substrate layer, wherein the substrate layer comprises a region made of a thermoplastic composition having a light transmission in the range from 380 to 780 nm of less than 0.1% determined at a layer thickness of 4 mm according to DIN ISO 13468-2:2006 (D65, 10°), and the region of the substrate layer in its respective thickness has a permeability to IR radiation in the range from 800 nm to 2500 nm of at least 50% determined according to DIN ISO 13468-2:2006 and wherein the composition consists of

i) at least 85% by weight of thermoplastic polymer selected from the group consisting of aromatic polycarbonate, polyester carbonate and/or polymethyl methacrylate,

ii) at least one green and/or one blue colorant

selected from the group consisting of the colorants of formulae (1), (2a-c), (3), (4a), (4b), (5) and/or (6)

wherein

Rc and Rd independently of one another represent a linear or branched alkyl radical or halogen,

n independently of the respective R represents an integer between 0 and 3, wherein the radical for n=0 is hydrogen,

and

iii) at least one red and/or violet colorant selected from the group consisting of the colorants of formulae (7), (8), (9), (10), (11), (12a), (12b) and/or (13)

wherein R is selected from the group consisting of H and p-methylphenylamine radical,

wherein

Ra and Rb independently of one another represent a linear or branched alkyl radical or halogen,

n independently of the respective R represents an integer between 0 and 3, wherein the radical for n=0 is hydrogen,

iv) optionally further colorants selected from the group consisting of the colorants of formulae (14), (15), (16), (17) and/or (18)

v) optionally heat stabilizers, mold release agents, UV absorbers, antistats and/or flow enhancers,

vi) 0% to less than 30.0% by weight of further thermoplastic polymers,

vii) 0% to less than 0.02% by weight of carbon black,

less than 0.1% by weight of further colorants and

less than 0.1% by weight of titanium dioxide,

wherein the sum of the colorants ii) to iv) is >0.10% by weight;

and wherein the thickness of the region of the substrate layer made of the thermoplastic composition is 1.0 to 6.0 mm.

14. A method of utilizing a molding having a substrate layer comprising a region made of a thermoplastic composition based on aromatic polycarbonate, polyester carbonate and/or polymethyl methacrylate having a thickness of this region of the substrate layer of 1.0 to 7.0 mm,

wherein the composition has a light transmission in the range from 380 to 780 nm of less than 25% determined at a layer thickness of 4 mm according to DIN ISO 13468-2:2006 (D65, 10°) and the region of the substrate layer made of the thermoplastic composition in its respective thickness has a permeability to IR radiation in the range from 800 nm to 2500 nm of at least 50% determined according to DIN IS 13468-2:2006,

for partially or completely covering a LiDAR sensor which emits laser pulses having a wavelength in the range from 800 to 2500 nm.

15. The method according to claim 14 , wherein the composition contains

i) at least 70% by weight of a thermoplastic from the group consisting of aromatic polycarbonate, polyester carbonate and/or polymethyl methacrylate,

ii) at least one green and/or one blue colorant selected from the group consisting of the colorants of formulae (1), (2a-c), (3), (4a), (4b), (5) and/or (6)

wherein

Rc and Rd independently of one another represent a linear or branched alkyl radical or halogen,

n independently of the respective R represents an integer between 0 and 3, wherein the radical for n=0 is hydrogen,

and

iii) at least one red and/or violet colorant selected from the group consisting of the colorants of formula (7), (8), (9), (10), (11), (12a), (12b) and/or (13)

wherein R is selected from the group consisting of H and p-methylphenylamine radical

wherein

Ra and Rb independently of one another represent a linear or branched alkyl radical or halogen,

n independently of the respective R represents an integer between 0 and 3, wherein the radical for n=0 is hydrogen,

iv) optionally one or more further colorants selected from the group consisting of the yellow and orange colorants of formulae (14), (15), (16), (17) and/or (18)

wherein the sum of the colorants ii) to iv) is >0.05% by weight and wherein the composition contains 0% to less than 30.0% by weight of further thermoplastic polymers, 0% to less than 0.02% by weight of carbon black, in addition to the colorants of groups ii) to iv) less than 0.1% by weight of further colorants and less than 0.1% by weight of white pigment.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 22, 2019
From: GROSSER, ULRICH; MEYER, ALEXANDER; KLEIN, ANDREAS
To: COVESTRO DEUTSCHLAND AG
Reel/Frame 050790/0993 →
Priority Claims (1)
EP 17167701 · Apr 24, 2017 · regional
Continuity (1)
Related Publication 20200377692A1 · Dec 3, 2020
Cited By (1)
US 12,399,256