Lidar system with synchronized mems mirrors
US-2018231640-A1 · Aug 16, 2018 · US
US11219923B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11219923-B2 |
| Application number | US-202117215766-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 29, 2021 |
| Priority date | Mar 30, 2020 |
| Publication date | Jan 11, 2022 |
| Grant date | Jan 11, 2022 |
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This invention provides a method for forming a multilayer coating film, the method comprising forming a multilayer coating film that has excellent blackness, high reflectance of an infrared laser, and excellent coating film performance. The method for forming a multilayer coating film includes forming a first colored coating film containing a titanium oxide pigment, in which the diffuse reflectance at a wavelength of 905 nm or diffuse reflectance at a wavelength of 1550 nm, or both, is 40% or more; forming a second colored coating film containing at least one pigment selected from the group consisting of (A1) a perylene black pigment, (A2) a black metal oxide complex pigment, and (A3) two or more pigments selected from the group consisting of blue pigments, red pigments, yellow pigments, and green pigments; forming a third colored coating film containing a carbon black pigment; and forming a clear coating film; wherein the multilayer coating film has a lightness L*(45°) of 3 or less and a chroma C*(45°) of 1 or less, and wherein the diffuse reflectance at a wavelength of 905 nm or the diffuse reflectance at a wavelength of 1550 nm of the multilayer coating film, or both, is 10% or more.
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The invention claimed is: 1. A method for forming a multilayer coating film, the method comprising step (1): applying a titanium oxide pigment-containing first colored paint (V) to form a first colored coating film, in which the diffuse reflectance at a wavelength of 905 nm or diffuse reflectance at a wavelength of 1550 nm, or both, is 40% or more, step (2): applying a second colored paint (W) containing at least one pigment selected from the group consisting of (A1) a perylene black pigment, (A2) a black metal oxide complex pigment, and (A3) two or more pigments selected from the group consisting of blue pigments, red pigments, yellow pigments, and green pigments to the first colored coating film to form a second colored coating film, step (3): applying a third colored paint (X) containing a carbon black pigment to the second colored coating film to form a third colored coating film, step (4): applying a clear paint (Y) to the third colored coating film to form a clear coating film, and step (5): heating the first colored coating film formed in step (1), the second colored coating film formed in step (2), the third colored coating film formed in step (3), and the clear coating film formed in step (4) separately or simultaneously to cure these films, wherein the multilayer coating film has a lightness) L*(45°) of 3 or less, the multilayer coating film has a chroma C*(45°) of 1 or less, and the diffuse reflectance at a wavelength of 905 nm or the diffuse reflectance at a wavelength of 1550 nm of the multilayer coating film, or both, is 10% or more. 2. A method for forming a multilayer coating film, the method comprising step (6): applying a titanium oxide pigment-containing first colored paint (V) to form a first colored coating film, in which the diffuse reflectance at a wavelength of 905 nm or diffuse reflectance at a wavelength of 1550 nm, or both, is 40% or more, step (7): applying a second colored paint (W) containing at least one pigment selected from the group consisting of (A1) a perylene black pigment, (A2) a black metal oxide complex pigment, and (A3) two or more pigments selected from the group consisting of blue pigments, red pigments, yellow pigments, and green pigments to the first colored coating film to form a second colored coating film, step (8): applying a color clear paint (Z) containing a carbon black pigment to the second colored coating film to form a color clear coating film, and step (9): heating the first colored coating film formed in step (6), the second colored coating film formed in step (7), and the color clear coating film famed in step (8) separately or simultaneously to cure these films, wherein the multilayer coating film has a lightness) L*(45°) of 3 or less, the multilayer coating film has a chroma C*(45°) of 1 or less, and the diffuse reflectance at a wavelength of 905 nm or the diffuse reflectance at a wavelength of 1550 nm of the multilayer coating film, or both, is 10% or more. 3. The method for forming a multilayer coating film according to claim 1 , wherein a value obtained by multiplying the thickness (μm) of the third colored coating film on a cured film basis by the pigment weight concentration (%) of the carbon black pigment in the third colored paint (X) is 2.5 to 20. 4. The method for forming a multilayer coating film according to claim 2 , wherein a value obtained by multiplying the thickness (μm) of the color clear coating film on a cured film basis by the pigment weight concentration (%) of the carbon black pigment in the color clear paint (Z) is 2.5 to 20. 5. The method for forming a multilayer coating film according to claim 1 , wherein the first colored coating film has a lightness L*(45°) of 55 or more. 6. The method for forming a multilayer coating film according to claim 1 , wherein the second colored paint (W) contains the perylene black pigment (A1), and the pigment weight concentration of the perylene black pigment (A1) is 3 to 30%. 7. The method for forming a multilayer coating film according to claim 1 , wherein the second colored paint (W) contains the black metal oxide complex pigment (A2), and the pigment weight concentration of the black metal oxide complex pigment (A2) is 5 to 50%. 8. The method for forming a multilayer coating film according to claim 1 , wherein the second colored paint (W) contains the two or more pigments (A3) selected from the group consisting of blue pigments, red pigments, yellow pigments, and green pigments, and the pigment weight concentration of the two or more pigments (A3) selected from the group consisting of blue pigments, red pigments, yellow pigments, and green pigments is 3 to 30%. 9. The method for forming a multilayer coating film according to claim 2 , wherein the first colored coating film has a lightness L*(45°) of 55 or more. 10. The method for forming a multilayer coating film according to claim 2 , wherein the second colored paint (W) contains the perylene black pigment (A1), and the pigment weight concentration of the perylene black pigment (A1) is 3 to 30%. 11. The method for forming a multilayer coating film according to claim 2 , wherein the second colored paint (W) contains the black metal oxide complex pigment (A2), and the pigment weight concentration of the black metal oxide complex pigment (A2) is 5 to 50%. 12. The method for forming a multilayer coating film according to claim 2 , wherein the second colored paint (W) contains the two or more pigments (A3) selected from the group consisting of blue pigments, red pigments, yellow pigments, and green pigments, and the pigment weight concentration of the two or more pigments (A3) selected from the group consisting of blue pigments, red pigments, yellow pigments, and green pigments is 3 to 30%.
Coating compositions based on polyesters obtained by reactions forming a carboxylic ester link in the main chain (based on polyester-amides C09D177/12; based on polyester-imides C09D179/08); Coating compositions based on derivatives of such polymers · CPC title
all layers being cured or baked together · CPC title
achieved by multilayers · CPC title
inorganic · CPC title
containing four or more polymers in a blend · CPC title
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